Skip to main content
Erschienen in: Inflammation 6/2018

08.08.2018 | ORIGINAL ARTICLE

Antibody Cross-Linking of CD14 Activates MerTK and Promotes Human Macrophage Clearance of Apoptotic Neutrophils: the Dual Role of CD14 at the Crossroads Between M1 and M2c Polarization

verfasst von: Gaetano Zizzo, Philip L. Cohen

Erschienen in: Inflammation | Ausgabe 6/2018

Einloggen, um Zugang zu erhalten

Abstract

Mer receptor tyrosine kinase (MerTK) is key for efficient phagocytosis of apoptotic neutrophils (ANs) and homeostasis of IL-10 production by human anti-inflammatory M2c monocytes/macrophages. We asked whether stimulation of M2c surface receptors contributes in turn to MerTK activation. For this purpose, human monocytes/macrophages were differentiated under M1, M2a, and M2c polarizing conditions. The effects of antibody-mediated cross-linking of M2c receptors (i.e., CD14, CD16, CD32, CD163, CD204) on MerTK phosphorylation and phagocytosis of ANs were tested. MerTK expression was also studied by flow cytometry and western blot in the presence of LPS and in M2c-derived microvesicles (MVs). Antibody cross-linking of either CD14 or CD32/FcγRII led to Syk activation and MerTK phosphorylation in its two distinct glycoforms (175–205 and 135–155 kDa). Cross-linked CD14 enhanced efferocytosis by M2c macrophages and enabled M1 and M2a cells to clear ANs efficiently. In M1 conditions, LPS abolished surface MerTK expression on CD14bright cell subsets, so disrupting the anti-inflammatory pathway. In M2c cells, instead, MerTK was diffusely and brightly co-expressed with CD14, and was also detected in M2c macrophage-derived MVs; in these conditions, LPS only partially downregulated MerTK on cell surfaces, while the smaller MerTK glycoform contained in MVs remained intact. Altogether, cooperation between CD14 and MerTK may foster the clearance of ANs by human monocytes/macrophages. CD14 stands between M1-related LPS co-receptor activity and M2c-related MerTK-dependent response. MerTK interaction with CD32/FcγRII, its detection in M2c MVs, and the differential localization and LPS susceptibility of MerTK glycoforms add further new elements to the complexity of the MerTK network.
Literatur
1.
Zurück zum Zitat Zizzo, G., and P.L. Cohen. 2013. IL-17 stimulates differentiation of human anti-inflammatory macrophages and phagocytosis of apoptotic neutrophils in response to IL-10 and glucocorticoids. Journal of Immunology 190: 5237–5246.CrossRef Zizzo, G., and P.L. Cohen. 2013. IL-17 stimulates differentiation of human anti-inflammatory macrophages and phagocytosis of apoptotic neutrophils in response to IL-10 and glucocorticoids. Journal of Immunology 190: 5237–5246.CrossRef
2.
Zurück zum Zitat Zizzo, G., B.A. Hilliard, M. Monestier, and P.L. Cohen. 2012. Efficient clearance of early apoptotic cells by human macrophages requires M2c polarization and MerTK induction. Journal of Immunology 189: 3508–3520.CrossRef Zizzo, G., B.A. Hilliard, M. Monestier, and P.L. Cohen. 2012. Efficient clearance of early apoptotic cells by human macrophages requires M2c polarization and MerTK induction. Journal of Immunology 189: 3508–3520.CrossRef
3.
Zurück zum Zitat McColl, A., S. Bournazos, S. Franz, M. Perretti, B.P. Morgan, C. Haslett, and I. Dransfield. 2009. Glucocorticoids induce protein S-dependent phagocytosis of apoptotic neutrophils by human macrophages. Journal of Immunology 183: 2167–2175.CrossRef McColl, A., S. Bournazos, S. Franz, M. Perretti, B.P. Morgan, C. Haslett, and I. Dransfield. 2009. Glucocorticoids induce protein S-dependent phagocytosis of apoptotic neutrophils by human macrophages. Journal of Immunology 183: 2167–2175.CrossRef
4.
Zurück zum Zitat Wu, Y., S. Singh, M.M. Georgescu, and R.B. Birge. 2005. A role for Mer tyrosine kinase in αvbeta5 integrin-mediated phagocytosis of apoptotic cells. Journal of Cell Science 118: 539–553.CrossRef Wu, Y., S. Singh, M.M. Georgescu, and R.B. Birge. 2005. A role for Mer tyrosine kinase in αvbeta5 integrin-mediated phagocytosis of apoptotic cells. Journal of Cell Science 118: 539–553.CrossRef
5.
Zurück zum Zitat Nishi, C., S. Toda, K. Segawa, and S. Nagata. 2014. Tim4- and MerTK-mediated engulfment of apoptotic cells by mouse resident peritoneal macrophages. Molecular and Cellular Biology 34: 1512–1520.CrossRef Nishi, C., S. Toda, K. Segawa, and S. Nagata. 2014. Tim4- and MerTK-mediated engulfment of apoptotic cells by mouse resident peritoneal macrophages. Molecular and Cellular Biology 34: 1512–1520.CrossRef
6.
Zurück zum Zitat Todt, J.C., B. Hu, and J.L. Curtis. 2008. The scavenger receptor SR-A I/II (CD204) signals via the receptor tyrosine kinase Mertk during apoptotic cell uptake by murine macrophages. Journal of Leukocyte Biology 84: 510–518.CrossRef Todt, J.C., B. Hu, and J.L. Curtis. 2008. The scavenger receptor SR-A I/II (CD204) signals via the receptor tyrosine kinase Mertk during apoptotic cell uptake by murine macrophages. Journal of Leukocyte Biology 84: 510–518.CrossRef
7.
Zurück zum Zitat Galvan, M.D., D.B. Foreman, E. Zeng, J.C. Tan, and S.S. Bohlson. 2012. Complement component C1q regulates macrophage expression of Mer tyrosine kinase to promote clearance of apoptotic cells. Journal of Immunology 188: 3716–3723.CrossRef Galvan, M.D., D.B. Foreman, E. Zeng, J.C. Tan, and S.S. Bohlson. 2012. Complement component C1q regulates macrophage expression of Mer tyrosine kinase to promote clearance of apoptotic cells. Journal of Immunology 188: 3716–3723.CrossRef
8.
Zurück zum Zitat Liao, D., X. Wang, M. Li, P.H. Lin, Q. Yao, and C. Chen. 2009. Human protein S inhibits the uptake of AcLDL and expression of SR-A through Mer receptor tyrosine kinase in human macrophages. Blood 113: 165–174.CrossRef Liao, D., X. Wang, M. Li, P.H. Lin, Q. Yao, and C. Chen. 2009. Human protein S inhibits the uptake of AcLDL and expression of SR-A through Mer receptor tyrosine kinase in human macrophages. Blood 113: 165–174.CrossRef
9.
Zurück zum Zitat Hulsebus, H.J., S.D. O'Conner, E.M. Smith, C. Jie, and S.S. Bohlson. 2016. Complement component C1q programs a pro-efferocytic phenotype while limiting TNFα production in primary mouse and human macrophages. Frontiers in Immunology 7: 230.CrossRef Hulsebus, H.J., S.D. O'Conner, E.M. Smith, C. Jie, and S.S. Bohlson. 2016. Complement component C1q programs a pro-efferocytic phenotype while limiting TNFα production in primary mouse and human macrophages. Frontiers in Immunology 7: 230.CrossRef
10.
Zurück zum Zitat Dransfield, I., A. Zagórska, E.D. Lew, K. Michail, and G. Lemke. 2015. Mer receptor tyrosine kinase mediates both tethering and phagocytosis of apoptotic cells. Cell Death & Disease 6: e1646.CrossRef Dransfield, I., A. Zagórska, E.D. Lew, K. Michail, and G. Lemke. 2015. Mer receptor tyrosine kinase mediates both tethering and phagocytosis of apoptotic cells. Cell Death & Disease 6: e1646.CrossRef
11.
Zurück zum Zitat Graham, D.K., T.L. Dawson, D.L. Mullaney, H.R. Snodgrass, and H.S. Earp. 1994. Cloning and mRNA expression analysis of a novel human protooncogene, c-mer. Cell Growth & Differentiation 5: 647–657. Graham, D.K., T.L. Dawson, D.L. Mullaney, H.R. Snodgrass, and H.S. Earp. 1994. Cloning and mRNA expression analysis of a novel human protooncogene, c-mer. Cell Growth & Differentiation 5: 647–657.
12.
Zurück zum Zitat Mikołajczyk, T.P., J.E. Skrzeczyńska-Moncznik, M.A. Zarebski, E.A. Marewicz, A.M. Wiśniewska, M. Dzieba, J.W. Dobrucki, and J.R. Pryjma. 2009. Interaction of human peripheral blood monocytes with apoptotic polymorphonuclear cells. Immunology 128: 103–113.CrossRef Mikołajczyk, T.P., J.E. Skrzeczyńska-Moncznik, M.A. Zarebski, E.A. Marewicz, A.M. Wiśniewska, M. Dzieba, J.W. Dobrucki, and J.R. Pryjma. 2009. Interaction of human peripheral blood monocytes with apoptotic polymorphonuclear cells. Immunology 128: 103–113.CrossRef
13.
Zurück zum Zitat Hashimoto, S., M. Yamada, K. Motoyoshi, and K.S. Akagawa. 1997. Enhancement of macrophage colony-stimulating factor-induced growth and differentiation of human monocytes by interleukin-10. Blood 89: 315–321.PubMed Hashimoto, S., M. Yamada, K. Motoyoshi, and K.S. Akagawa. 1997. Enhancement of macrophage colony-stimulating factor-induced growth and differentiation of human monocytes by interleukin-10. Blood 89: 315–321.PubMed
14.
Zurück zum Zitat Feng, W., D. Yasumura, M.T. Matthes, M.M. LaVail, and D. Vollrath. 2002. Mertk triggers uptake of photoreceptor outer segments during phagocytosis by cultured retinal pigment epithelial cells. The Journal of Biological Chemistry 277: 17016–17022.CrossRef Feng, W., D. Yasumura, M.T. Matthes, M.M. LaVail, and D. Vollrath. 2002. Mertk triggers uptake of photoreceptor outer segments during phagocytosis by cultured retinal pigment epithelial cells. The Journal of Biological Chemistry 277: 17016–17022.CrossRef
15.
Zurück zum Zitat Graham, D.K., D.B. Salzberg, J. Kurtzberg, S. Sather, G.K. Matsushima, A.K. Keating, X. Liang, M.A. Lovell, S.A. Williams, T.L. Dawson, M.J. Schell, A.A. Anwar, H.R. Snodgrass, and H.S. Earp. 2006. Ectopic expression of the proto-oncogene Mer in pediatric T-cell acute lymphoblastic leukemia. Clinical Cancer Research 12: 2662–2669.CrossRef Graham, D.K., D.B. Salzberg, J. Kurtzberg, S. Sather, G.K. Matsushima, A.K. Keating, X. Liang, M.A. Lovell, S.A. Williams, T.L. Dawson, M.J. Schell, A.A. Anwar, H.R. Snodgrass, and H.S. Earp. 2006. Ectopic expression of the proto-oncogene Mer in pediatric T-cell acute lymphoblastic leukemia. Clinical Cancer Research 12: 2662–2669.CrossRef
16.
Zurück zum Zitat Migdall-Wilson, J., C. Bates, J. Schlegel, L. Brandão, R.M. Linger, D. DeRyckere, and D.K. Graham. 2012. Prolonged exposure to a Mer ligand in leukemia: Gas6 favors expression of a partial Mer glycoform and reveals a novel role for Mer in the nucleus. PLoS One 7: e31635.CrossRef Migdall-Wilson, J., C. Bates, J. Schlegel, L. Brandão, R.M. Linger, D. DeRyckere, and D.K. Graham. 2012. Prolonged exposure to a Mer ligand in leukemia: Gas6 favors expression of a partial Mer glycoform and reveals a novel role for Mer in the nucleus. PLoS One 7: e31635.CrossRef
17.
Zurück zum Zitat Zizzo, G., and P.L. Cohen. 2015. The PPAR-γ antagonist GW9662 elicits differentiation of M2c-like cells and upregulation of the MerTK/Gas6 axis: a key role for PPAR-γ in human macrophage polarization. Journal of Inflammation (Lond) 12: 36.CrossRef Zizzo, G., and P.L. Cohen. 2015. The PPAR-γ antagonist GW9662 elicits differentiation of M2c-like cells and upregulation of the MerTK/Gas6 axis: a key role for PPAR-γ in human macrophage polarization. Journal of Inflammation (Lond) 12: 36.CrossRef
18.
Zurück zum Zitat Schlegel, R.A., S. Krahling, M.K. Callahan, and P. Williamson. 1999. CD14 is a component of multiple recognition systems used by macrophages to phagocytose apoptotic lymphocytes. Cell Death and Differentiation 6: 583–592.CrossRef Schlegel, R.A., S. Krahling, M.K. Callahan, and P. Williamson. 1999. CD14 is a component of multiple recognition systems used by macrophages to phagocytose apoptotic lymphocytes. Cell Death and Differentiation 6: 583–592.CrossRef
19.
Zurück zum Zitat Ogden, C.A., J.D. Pound, B.K. Batth, S. Owens, I. Johannessen, K. Wood, and C.D. Gregory. 2005. Enhanced apoptotic cell clearance capacity and B cell survival factor production by IL-10-activated macrophages: implications for Burkitt's lymphoma. Journal of Immunology 174: 3015–3023.CrossRef Ogden, C.A., J.D. Pound, B.K. Batth, S. Owens, I. Johannessen, K. Wood, and C.D. Gregory. 2005. Enhanced apoptotic cell clearance capacity and B cell survival factor production by IL-10-activated macrophages: implications for Burkitt's lymphoma. Journal of Immunology 174: 3015–3023.CrossRef
20.
Zurück zum Zitat Xu, W., A. Roos, N. Schlagwein, A.M. Woltman, M.R. Daha, and C. van Kooten. 2006. IL-10-producing macrophages preferentially clear early apoptotic cells. Blood 107: 4930–4937.CrossRef Xu, W., A. Roos, N. Schlagwein, A.M. Woltman, M.R. Daha, and C. van Kooten. 2006. IL-10-producing macrophages preferentially clear early apoptotic cells. Blood 107: 4930–4937.CrossRef
21.
Zurück zum Zitat Flora, P.K., and C.D. Gregory. 1994. Recognition of apoptotic cells by human macrophages: inhibition by a monocyte/macrophage-specific monoclonal antibody. European Journal of Immunology 24: 2625–2632.CrossRef Flora, P.K., and C.D. Gregory. 1994. Recognition of apoptotic cells by human macrophages: inhibition by a monocyte/macrophage-specific monoclonal antibody. European Journal of Immunology 24: 2625–2632.CrossRef
22.
Zurück zum Zitat Fadok, V.A., M.L. Warner, D.L. Bratton, and P.M. Henson. 1998. CD36 is required for phagocytosis of apoptotic cells by human macrophages that use either a phosphatidylserine receptor or the vitronectin receptor (α v beta 3). Journal of Immunology 161: 6250–6257. Fadok, V.A., M.L. Warner, D.L. Bratton, and P.M. Henson. 1998. CD36 is required for phagocytosis of apoptotic cells by human macrophages that use either a phosphatidylserine receptor or the vitronectin receptor (α v beta 3). Journal of Immunology 161: 6250–6257.
23.
Zurück zum Zitat Devitt, A., S. Pierce, C. Oldreive, W.H. Shingler, and C.D. Gregory. 2003. CD14-dependent clearance of apoptotic cells by human macrophages: the role of phosphatidylserine. Cell Death and Differentiation 10: 371–382.CrossRef Devitt, A., S. Pierce, C. Oldreive, W.H. Shingler, and C.D. Gregory. 2003. CD14-dependent clearance of apoptotic cells by human macrophages: the role of phosphatidylserine. Cell Death and Differentiation 10: 371–382.CrossRef
24.
Zurück zum Zitat Hodrea, J., G. Majai, Z. Doró, G. Zahuczky, A. Pap, É. Rajnavölgyi, and L. Fésüs. 2012. The glucocorticoid dexamethasone programs human dendritic cells for enhanced phagocytosis of apoptotic neutrophils and inflammatory response. Journal of Leukocyte Biology 91: 127–136.CrossRef Hodrea, J., G. Majai, Z. Doró, G. Zahuczky, A. Pap, É. Rajnavölgyi, and L. Fésüs. 2012. The glucocorticoid dexamethasone programs human dendritic cells for enhanced phagocytosis of apoptotic neutrophils and inflammatory response. Journal of Leukocyte Biology 91: 127–136.CrossRef
25.
Zurück zum Zitat Haziot, A., X.Y. Lin, F. Zhang, and S.M. Goyert. 1998. The induction of acute phase proteins by lipopolysaccharide uses a novel pathway that is CD14-independent. Journal of Immunology 160: 2570–2572. Haziot, A., X.Y. Lin, F. Zhang, and S.M. Goyert. 1998. The induction of acute phase proteins by lipopolysaccharide uses a novel pathway that is CD14-independent. Journal of Immunology 160: 2570–2572.
26.
Zurück zum Zitat Zanoni, I., R. Ostuni, L.R. Marek, S. Barresi, R. Barbalat, G.M. Barton, F. Granucci, and J.C. Kagan. 2011. CD14 controls the LPS-induced endocytosis of Toll-like receptor 4. Cell 147: 868–880.CrossRef Zanoni, I., R. Ostuni, L.R. Marek, S. Barresi, R. Barbalat, G.M. Barton, F. Granucci, and J.C. Kagan. 2011. CD14 controls the LPS-induced endocytosis of Toll-like receptor 4. Cell 147: 868–880.CrossRef
27.
Zurück zum Zitat Crowley, M.T., P.S. Costello, C.J. Fitzer-Attas, M. Turner, F. Meng, C. Lowell, V.L. Tybulewicz, and A.L. DeFranco. 1997. A critical role for Syk in signal transduction and phagocytosis mediated by Fcgamma receptors on macrophages. The Journal of Experimental Medicine 186: 1027–1039.CrossRef Crowley, M.T., P.S. Costello, C.J. Fitzer-Attas, M. Turner, F. Meng, C. Lowell, V.L. Tybulewicz, and A.L. DeFranco. 1997. A critical role for Syk in signal transduction and phagocytosis mediated by Fcgamma receptors on macrophages. The Journal of Experimental Medicine 186: 1027–1039.CrossRef
28.
Zurück zum Zitat Pan, X.Q., C. Darby, Z.K. Indik, and A.D. Schreiber. 1999. Activation of three classes of nonreceptor tyrosine kinases following Fc gamma receptor crosslinking in human monocytes. Clinical Immunology 90: 55–64.CrossRef Pan, X.Q., C. Darby, Z.K. Indik, and A.D. Schreiber. 1999. Activation of three classes of nonreceptor tyrosine kinases following Fc gamma receptor crosslinking in human monocytes. Clinical Immunology 90: 55–64.CrossRef
29.
Zurück zum Zitat Thorp, E., T. Vaisar, M. Subramanian, L. Mautner, C. Blobel, and I. Tabas. 2011. Shedding of the Mer tyrosine kinase receptor is mediated by ADAM17 protein through a pathway involving reactive oxygen species, protein kinase Cδ, and p38 mitogen-activated protein kinase (MAPK). The Journal of Biological Chemistry 286: 33335–33344.CrossRef Thorp, E., T. Vaisar, M. Subramanian, L. Mautner, C. Blobel, and I. Tabas. 2011. Shedding of the Mer tyrosine kinase receptor is mediated by ADAM17 protein through a pathway involving reactive oxygen species, protein kinase Cδ, and p38 mitogen-activated protein kinase (MAPK). The Journal of Biological Chemistry 286: 33335–33344.CrossRef
30.
Zurück zum Zitat Satta, N., F. Toti, O. Feugeas, A. Bohbot, J. Dachary-Prigent, V. Eschwège, H. Hedman, and J.M. Freyssinet. 1994. Monocyte vesiculation is a possible mechanism for dissemination of membrane-associated procoagulant activities and adhesion molecules after stimulation by lipopolysaccharide. Journal of Immunology 153: 3245–3255. Satta, N., F. Toti, O. Feugeas, A. Bohbot, J. Dachary-Prigent, V. Eschwège, H. Hedman, and J.M. Freyssinet. 1994. Monocyte vesiculation is a possible mechanism for dissemination of membrane-associated procoagulant activities and adhesion molecules after stimulation by lipopolysaccharide. Journal of Immunology 153: 3245–3255.
31.
Zurück zum Zitat Sarkar, A., S. Mitra, S. Mehta, R. Raices, and M.D. Wewers. 2009. Monocyte derived microvesicles deliver a cell death message via encapsulated caspase-1. PLoS One 4: e7140.CrossRef Sarkar, A., S. Mitra, S. Mehta, R. Raices, and M.D. Wewers. 2009. Monocyte derived microvesicles deliver a cell death message via encapsulated caspase-1. PLoS One 4: e7140.CrossRef
32.
Zurück zum Zitat Distler, J.H., D.S. Pisetsky, L.C. Huber, J.R. Kalden, S. Gay, and O. Distler. 2005. Microparticles as regulators of inflammation: novel players of cellular crosstalk in the rheumatic diseases. Arthritis and Rheumatism 52: 3337–3348.CrossRef Distler, J.H., D.S. Pisetsky, L.C. Huber, J.R. Kalden, S. Gay, and O. Distler. 2005. Microparticles as regulators of inflammation: novel players of cellular crosstalk in the rheumatic diseases. Arthritis and Rheumatism 52: 3337–3348.CrossRef
33.
Zurück zum Zitat Braig, D., T.L. Nero, H.G. Koch, B. Kaiser, X. Wang, J.R. Thiele, C.J. Morton, J. Zeller, J. Kiefer, L.A. Potempa, N.A. Mellett, L.A. Miles, X.J. Du, P.J. Meikle, M. Huber-Lang, G.B. Stark, M.W. Parker, K. Peter, and S.U. Eisenhardt. 2017. Transitional changes in the CRP structure lead to the exposure of proinflammatory binding sites. Nature Communications 8: 14188.CrossRef Braig, D., T.L. Nero, H.G. Koch, B. Kaiser, X. Wang, J.R. Thiele, C.J. Morton, J. Zeller, J. Kiefer, L.A. Potempa, N.A. Mellett, L.A. Miles, X.J. Du, P.J. Meikle, M. Huber-Lang, G.B. Stark, M.W. Parker, K. Peter, and S.U. Eisenhardt. 2017. Transitional changes in the CRP structure lead to the exposure of proinflammatory binding sites. Nature Communications 8: 14188.CrossRef
34.
Zurück zum Zitat Liu, M.L., M.P. Reilly, P. Casasanto, S.E. McKenzie, and K.J. Williams. 2007. Cholesterol enrichment of human monocyte/macrophages induces surface exposure of phosphatidylserine and the release of biologically-active tissue factor-positive microvesicles. Arteriosclerosis, Thrombosis, and Vascular Biology 27: 430–435.CrossRef Liu, M.L., M.P. Reilly, P. Casasanto, S.E. McKenzie, and K.J. Williams. 2007. Cholesterol enrichment of human monocyte/macrophages induces surface exposure of phosphatidylserine and the release of biologically-active tissue factor-positive microvesicles. Arteriosclerosis, Thrombosis, and Vascular Biology 27: 430–435.CrossRef
35.
Zurück zum Zitat Wright, S.D., R.A. Ramos, P.S. Tobias, R.J. Ulevitch, and J.C. Mathison. 1990. CD14, a receptor for complexes of lipopolysaccharide (LPS) and LPS binding protein. Science 249: 1431–1433.CrossRef Wright, S.D., R.A. Ramos, P.S. Tobias, R.J. Ulevitch, and J.C. Mathison. 1990. CD14, a receptor for complexes of lipopolysaccharide (LPS) and LPS binding protein. Science 249: 1431–1433.CrossRef
36.
Zurück zum Zitat Wang, P.Y., R.L. Kitchens, and R.S. Munford. 1998. Phosphatidylinositides bind to plasma membrane CD14 and can prevent monocyte activation by bacterial lipopolysaccharide. The Journal of Biological Chemistry 273: 24309–24313.CrossRef Wang, P.Y., R.L. Kitchens, and R.S. Munford. 1998. Phosphatidylinositides bind to plasma membrane CD14 and can prevent monocyte activation by bacterial lipopolysaccharide. The Journal of Biological Chemistry 273: 24309–24313.CrossRef
37.
Zurück zum Zitat Akashi, S., H. Ogata, F. Kirikae, T. Kirikae, K. Kawasaki, M. Nishijima, R. Shimazu, Y. Nagai, K. Fukudome, M. Kimoto, and K. Miyake. 2000. Regulatory roles for CD14 and phosphatidylinositol in the signaling via toll-like receptor 4-MD-2. Biochemical and Biophysical Research Communications 268: 172–177.CrossRef Akashi, S., H. Ogata, F. Kirikae, T. Kirikae, K. Kawasaki, M. Nishijima, R. Shimazu, Y. Nagai, K. Fukudome, M. Kimoto, and K. Miyake. 2000. Regulatory roles for CD14 and phosphatidylinositol in the signaling via toll-like receptor 4-MD-2. Biochemical and Biophysical Research Communications 268: 172–177.CrossRef
38.
Zurück zum Zitat Devitt, A., O.D. Moffatt, C. Raykundalia, J.D. Capra, D.L. Simmons, and C.D. Gregory. 1998. Human CD14 mediates recognition and phagocytosis of apoptotic cells. Nature 392: 505–509.CrossRef Devitt, A., O.D. Moffatt, C. Raykundalia, J.D. Capra, D.L. Simmons, and C.D. Gregory. 1998. Human CD14 mediates recognition and phagocytosis of apoptotic cells. Nature 392: 505–509.CrossRef
39.
Zurück zum Zitat Hoffmann, P.R., A.M. de Cathelineau, C.A. Ogden, Y. Leverrier, D.L. Bratton, D.L. Daleke, A.J. Ridley, V.A. Fadok, and P.M. Henson. 2001. Phosphatidylserine (PS) induces PS receptor-mediated macropinocytosis and promotes clearance of apoptotic cells. J Cell Biol. 155: 649–659.CrossRef Hoffmann, P.R., A.M. de Cathelineau, C.A. Ogden, Y. Leverrier, D.L. Bratton, D.L. Daleke, A.J. Ridley, V.A. Fadok, and P.M. Henson. 2001. Phosphatidylserine (PS) induces PS receptor-mediated macropinocytosis and promotes clearance of apoptotic cells. J Cell Biol. 155: 649–659.CrossRef
40.
Zurück zum Zitat Lingnau, M., C. Höflich, H.D. Volk, R. Sabat, and W.D. Döcke. 2007. Interleukin-10 enhances the CD14-dependent phagocytosis of bacteria and apoptotic cells by human monocytes. Human Immunology 68: 730–738.CrossRef Lingnau, M., C. Höflich, H.D. Volk, R. Sabat, and W.D. Döcke. 2007. Interleukin-10 enhances the CD14-dependent phagocytosis of bacteria and apoptotic cells by human monocytes. Human Immunology 68: 730–738.CrossRef
41.
Zurück zum Zitat Scott, R.S., E.J. McMahon, S.M. Pop, E.A. Reap, R. Caricchio, P.L. Cohen, H.S. Earp, and G.K. Matsushima. 2001. Phagocytosis and clearance of apoptotic cells is mediated by MER. Nature 411: 207–211.CrossRef Scott, R.S., E.J. McMahon, S.M. Pop, E.A. Reap, R. Caricchio, P.L. Cohen, H.S. Earp, and G.K. Matsushima. 2001. Phagocytosis and clearance of apoptotic cells is mediated by MER. Nature 411: 207–211.CrossRef
42.
Zurück zum Zitat Cohen, P.L., R. Caricchio, V. Abraham, T.D. Camenisch, J.C. Jennette, R.A. Roubey, H.S. Earp, G. Matsushima, and E.A. Reap. 2002. Delayed apoptotic cell clearance and lupus-like autoimmunity in mice lacking the c-mer membrane tyrosine kinase. The Journal of Experimental Medicine 196: 135–140.CrossRef Cohen, P.L., R. Caricchio, V. Abraham, T.D. Camenisch, J.C. Jennette, R.A. Roubey, H.S. Earp, G. Matsushima, and E.A. Reap. 2002. Delayed apoptotic cell clearance and lupus-like autoimmunity in mice lacking the c-mer membrane tyrosine kinase. The Journal of Experimental Medicine 196: 135–140.CrossRef
43.
Zurück zum Zitat Shao, W.H., Y. Zhen, R.A. Eisenberg, and P.L. Cohen. 2009. The Mer receptor tyrosine kinase is expressed on discrete macrophage subpopulations and mainly uses Gas6 as its ligand for uptake of apoptotic cells. Clinical Immunology 133: 138–144.CrossRef Shao, W.H., Y. Zhen, R.A. Eisenberg, and P.L. Cohen. 2009. The Mer receptor tyrosine kinase is expressed on discrete macrophage subpopulations and mainly uses Gas6 as its ligand for uptake of apoptotic cells. Clinical Immunology 133: 138–144.CrossRef
44.
Zurück zum Zitat Devitt, A., K.G. Parker, C.A. Ogden, C. Oldreive, M.F. Clay, L.A. Melville, C.O. Bellamy, A. Lacy-Hulbert, S.C. Gangloff, S.M. Goyert, and C.D. Gregory. 2004. Persistence of apoptotic cells without autoimmune disease or inflammation in CD14-/- mice. The Journal of Cell Biology 167: 1161–1170.CrossRef Devitt, A., K.G. Parker, C.A. Ogden, C. Oldreive, M.F. Clay, L.A. Melville, C.O. Bellamy, A. Lacy-Hulbert, S.C. Gangloff, S.M. Goyert, and C.D. Gregory. 2004. Persistence of apoptotic cells without autoimmune disease or inflammation in CD14-/- mice. The Journal of Cell Biology 167: 1161–1170.CrossRef
45.
Zurück zum Zitat Sen, P., M.A. Wallet, Z. Yi, Y. Huang, M. Henderson, C.E. Mathews, H.S. Earp, G. Matsushima, A.S. Baldwin Jr., and R.M. Tisch. 2007. Apoptotic cells induce Mer tyrosine kinase-dependent blockade of NF-kappaB activation in dendritic cells. Blood 109: 653–660.CrossRef Sen, P., M.A. Wallet, Z. Yi, Y. Huang, M. Henderson, C.E. Mathews, H.S. Earp, G. Matsushima, A.S. Baldwin Jr., and R.M. Tisch. 2007. Apoptotic cells induce Mer tyrosine kinase-dependent blockade of NF-kappaB activation in dendritic cells. Blood 109: 653–660.CrossRef
46.
Zurück zum Zitat Healy, L.M., G. Perron, S.Y. Won, M.A. Michell-Robinson, A. Rezk, S.K. Ludwin, C.S. Moore, J.A. Hall, A. Bar-Or, and J.P. Antel. 2016. MerTK is a functional regulator of myelin phagocytosis by human myeloid cells. Journal of Immunology 196: 3375–3384.CrossRef Healy, L.M., G. Perron, S.Y. Won, M.A. Michell-Robinson, A. Rezk, S.K. Ludwin, C.S. Moore, J.A. Hall, A. Bar-Or, and J.P. Antel. 2016. MerTK is a functional regulator of myelin phagocytosis by human myeloid cells. Journal of Immunology 196: 3375–3384.CrossRef
47.
Zurück zum Zitat Shiratsuchi, A., I. Watanabe, O. Takeuchi, S. Akira, and Y. Nakanishi. 2004. Inhibitory effect of Toll-like receptor 4 on fusion between phagosomes and endosomes/lysosomes in macrophages. Journal of Immunology 172: 2039–2047.CrossRef Shiratsuchi, A., I. Watanabe, O. Takeuchi, S. Akira, and Y. Nakanishi. 2004. Inhibitory effect of Toll-like receptor 4 on fusion between phagosomes and endosomes/lysosomes in macrophages. Journal of Immunology 172: 2039–2047.CrossRef
48.
Zurück zum Zitat Thomas, L., A. Bielemeier, P.A. Lambert, R.P. Darveau, L.J. Marshall, and A. Devitt. 2013. The N-terminus of CD14 acts to bind apoptotic cells and confers rapid-tethering capabilities on non-myeloid cells. PLoS One 8: e70691.CrossRef Thomas, L., A. Bielemeier, P.A. Lambert, R.P. Darveau, L.J. Marshall, and A. Devitt. 2013. The N-terminus of CD14 acts to bind apoptotic cells and confers rapid-tethering capabilities on non-myeloid cells. PLoS One 8: e70691.CrossRef
49.
Zurück zum Zitat Black, R.A., C.T. Rauch, C.J. Kozlosky, J.J. Peschon, J.L. Slack, M.F. Wolfson, B.J. Castner, K.L. Stocking, P. Reddy, S. Srinivasan, N. Nelson, N. Boiani, K.A. Schooley, M. Gerhart, R. Davis, J.N. Fitzner, R.S. Johnson, R.J. Paxton, C.J. March, and D.P. Cerretti. 1997. A metalloproteinase disintegrin that releases tumour-necrosis factor-α from cells. Nature 385: 729–733.CrossRef Black, R.A., C.T. Rauch, C.J. Kozlosky, J.J. Peschon, J.L. Slack, M.F. Wolfson, B.J. Castner, K.L. Stocking, P. Reddy, S. Srinivasan, N. Nelson, N. Boiani, K.A. Schooley, M. Gerhart, R. Davis, J.N. Fitzner, R.S. Johnson, R.J. Paxton, C.J. March, and D.P. Cerretti. 1997. A metalloproteinase disintegrin that releases tumour-necrosis factor-α from cells. Nature 385: 729–733.CrossRef
50.
Zurück zum Zitat Camenisch, T.D., B.H. Koller, H.S. Earp, and G.K. Matsushima. 1999. A novel receptor tyrosine kinase, Mer, inhibits TNF-α production and lipopolysaccharide-induced endotoxic shock. Journal of Immunology 162: 3498–3503. Camenisch, T.D., B.H. Koller, H.S. Earp, and G.K. Matsushima. 1999. A novel receptor tyrosine kinase, Mer, inhibits TNF-α production and lipopolysaccharide-induced endotoxic shock. Journal of Immunology 162: 3498–3503.
51.
Zurück zum Zitat Alciato, F., P.P. Sainaghi, D. Sola, L. Castello, and G.C. Avanzi. 2010. TNF-α, IL-6, and IL-1 expression is inhibited by GAS6 in monocytes/macrophages. Journal of Leukocyte Biology 87: 869–875.CrossRef Alciato, F., P.P. Sainaghi, D. Sola, L. Castello, and G.C. Avanzi. 2010. TNF-α, IL-6, and IL-1 expression is inhibited by GAS6 in monocytes/macrophages. Journal of Leukocyte Biology 87: 869–875.CrossRef
52.
Zurück zum Zitat Liu, M.L., R. Scalia, J.L. Mehta, and K.J. Williams. 2012. Cholesterol-induced membrane microvesicles as novel carriers of damage-associated molecular patterns: mechanisms of formation, action, and detoxification. Arteriosclerosis, Thrombosis, and Vascular Biology 32: 2113–2121.CrossRef Liu, M.L., R. Scalia, J.L. Mehta, and K.J. Williams. 2012. Cholesterol-induced membrane microvesicles as novel carriers of damage-associated molecular patterns: mechanisms of formation, action, and detoxification. Arteriosclerosis, Thrombosis, and Vascular Biology 32: 2113–2121.CrossRef
53.
Zurück zum Zitat Anwar, A., A.K. Keating, D. Joung, S. Sather, G.K. Kim, K.K. Sawczyn, L. Brandão, P.M. Henson, and D.K. Graham. 2009. Mer tyrosine kinase (MerTK) promotes macrophage survival following exposure to oxidative stress. Journal of Leukocyte Biology 86: 73–79.CrossRef Anwar, A., A.K. Keating, D. Joung, S. Sather, G.K. Kim, K.K. Sawczyn, L. Brandão, P.M. Henson, and D.K. Graham. 2009. Mer tyrosine kinase (MerTK) promotes macrophage survival following exposure to oxidative stress. Journal of Leukocyte Biology 86: 73–79.CrossRef
54.
Zurück zum Zitat Suh, C.H., B. Hilliard, S. Li, J.T. Merrill, and P.L. Cohen. 2010. TAM receptor ligands in lupus: protein S but not Gas6 levels reflect disease activity in systemic lupus erythematosus. Arthritis Research & Therapy 12: R146.CrossRef Suh, C.H., B. Hilliard, S. Li, J.T. Merrill, and P.L. Cohen. 2010. TAM receptor ligands in lupus: protein S but not Gas6 levels reflect disease activity in systemic lupus erythematosus. Arthritis Research & Therapy 12: R146.CrossRef
55.
Zurück zum Zitat Zizzo, G., J. Guerrieri, L.M. Dittman, J.T. Merrill, and P.L. Cohen. 2013. Circulating levels of soluble MER in lupus reflect M2c activation of monocytes/macrophages, autoantibody specificities and disease activity. Arthritis Research & Therapy 15: R212.CrossRef Zizzo, G., J. Guerrieri, L.M. Dittman, J.T. Merrill, and P.L. Cohen. 2013. Circulating levels of soluble MER in lupus reflect M2c activation of monocytes/macrophages, autoantibody specificities and disease activity. Arthritis Research & Therapy 15: R212.CrossRef
56.
Zurück zum Zitat Gris, J.C., P. Toulon, S. Brun, C. Maugard, C. Sarlat, J.F. Schved, and J. Berlan. 1996. The relationship between plasma microparticles, protein S and anticardiolipin antibodies in patients with human immunodeficiency virus infection. Thrombosis and Haemostasis 76: 38–45.CrossRef Gris, J.C., P. Toulon, S. Brun, C. Maugard, C. Sarlat, J.F. Schved, and J. Berlan. 1996. The relationship between plasma microparticles, protein S and anticardiolipin antibodies in patients with human immunodeficiency virus infection. Thrombosis and Haemostasis 76: 38–45.CrossRef
57.
Zurück zum Zitat Cosemans, J.M., R. Van Kruchten, S. Olieslagers, L.J. Schurgers, F.K. Verheyen, I.C. Munnix, J. Waltenberger, A. Angelillo-Scherrer, M.F. Hoylaerts, P. Carmeliet, and J.W. Heemskerk. 2010. Potentiating role of Gas6 and Tyro3, Axl and Mer (TAM) receptors in human and murine platelet activation and thrombus stabilization. Journal of Thrombosis and Haemostasis 8: 1797–1808.CrossRef Cosemans, J.M., R. Van Kruchten, S. Olieslagers, L.J. Schurgers, F.K. Verheyen, I.C. Munnix, J. Waltenberger, A. Angelillo-Scherrer, M.F. Hoylaerts, P. Carmeliet, and J.W. Heemskerk. 2010. Potentiating role of Gas6 and Tyro3, Axl and Mer (TAM) receptors in human and murine platelet activation and thrombus stabilization. Journal of Thrombosis and Haemostasis 8: 1797–1808.CrossRef
58.
Zurück zum Zitat Loges, S., T. Schmidt, M. Tjwa, K. van Geyte, D. Lievens, E. Lutgens, D. Vanhoutte, D. Borgel, S. Plaisance, M. Hoylaerts, A. Luttun, M. Dewerchin, B. Jonckx, and P. Carmeliet. 2010. Malignant cells fuel tumor growth by educating infiltrating leukocytes to produce the mitogen Gas6. Blood 115: 2264–2273.CrossRef Loges, S., T. Schmidt, M. Tjwa, K. van Geyte, D. Lievens, E. Lutgens, D. Vanhoutte, D. Borgel, S. Plaisance, M. Hoylaerts, A. Luttun, M. Dewerchin, B. Jonckx, and P. Carmeliet. 2010. Malignant cells fuel tumor growth by educating infiltrating leukocytes to produce the mitogen Gas6. Blood 115: 2264–2273.CrossRef
59.
Zurück zum Zitat Chaudhary, A., T.M. Fresquez, and M.J. Naranjo. 2007. Tyrosine kinase Syk associates with toll-like receptor 4 and regulates signaling in human monocytic cells. Immunology and Cell Biology 85: 249–256.CrossRef Chaudhary, A., T.M. Fresquez, and M.J. Naranjo. 2007. Tyrosine kinase Syk associates with toll-like receptor 4 and regulates signaling in human monocytic cells. Immunology and Cell Biology 85: 249–256.CrossRef
60.
Zurück zum Zitat Hart, S.P., K.M. Alexander, and I. Dransfield. 2004. Immune complexes bind preferentially to Fc gamma RIIA (CD32) on apoptotic neutrophils, leading to augmented phagocytosis by macrophages and release of proinflammatory cytokines. Journal of Immunology 172: 1882–1887.CrossRef Hart, S.P., K.M. Alexander, and I. Dransfield. 2004. Immune complexes bind preferentially to Fc gamma RIIA (CD32) on apoptotic neutrophils, leading to augmented phagocytosis by macrophages and release of proinflammatory cytokines. Journal of Immunology 172: 1882–1887.CrossRef
61.
Zurück zum Zitat Muñoz, L.E., C. Janko, G.E. Grossmayer, B. Frey, R.E. Voll, P. Kern, J.R. Kalden, G. Schett, R. Fietkau, M. Herrmann, and U.S. Gaipl. 2009. Remnants of secondarily necrotic cells fuel inflammation in systemic lupus erythematosus. Arthritis and Rheumatism 60: 1733–1742.CrossRef Muñoz, L.E., C. Janko, G.E. Grossmayer, B. Frey, R.E. Voll, P. Kern, J.R. Kalden, G. Schett, R. Fietkau, M. Herrmann, and U.S. Gaipl. 2009. Remnants of secondarily necrotic cells fuel inflammation in systemic lupus erythematosus. Arthritis and Rheumatism 60: 1733–1742.CrossRef
62.
Zurück zum Zitat Zhang, W., W. Xu, and S. Xiong. 2010. Blockade of Notch1 signaling alleviates murine lupus via blunting macrophage activation and M2b polarization. Journal of Immunology 184: 6465–6478.CrossRef Zhang, W., W. Xu, and S. Xiong. 2010. Blockade of Notch1 signaling alleviates murine lupus via blunting macrophage activation and M2b polarization. Journal of Immunology 184: 6465–6478.CrossRef
63.
Zurück zum Zitat Hiasa, M., M. Abe, A. Nakano, A. Oda, H. Amou, S. Kido, K. Takeuchi, K. Kagawa, K. Yata, T. Hashimoto, S. Ozaki, K. Asaoka, E. Tanaka, K. Moriyama, and T. Matsumoto. 2009. GM-CSF and IL-4 induce dendritic cell differentiation and disrupt osteoclastogenesis through M-CSF receptor shedding by up-regulation of TNF-α converting enzyme (TACE). Blood 114: 4517–4526.CrossRef Hiasa, M., M. Abe, A. Nakano, A. Oda, H. Amou, S. Kido, K. Takeuchi, K. Kagawa, K. Yata, T. Hashimoto, S. Ozaki, K. Asaoka, E. Tanaka, K. Moriyama, and T. Matsumoto. 2009. GM-CSF and IL-4 induce dendritic cell differentiation and disrupt osteoclastogenesis through M-CSF receptor shedding by up-regulation of TNF-α converting enzyme (TACE). Blood 114: 4517–4526.CrossRef
64.
Zurück zum Zitat Etzerodt, A., M.B. Maniecki, K. Møller, H.J. Møller, and S.K. Moestrup. 2010. Tumor necrosis factor α-converting enzyme (TACE/ADAM17) mediates ectodomain shedding of the scavenger receptor CD163. Journal of Leukocyte Biology 88: 1201–1205.CrossRef Etzerodt, A., M.B. Maniecki, K. Møller, H.J. Møller, and S.K. Moestrup. 2010. Tumor necrosis factor α-converting enzyme (TACE/ADAM17) mediates ectodomain shedding of the scavenger receptor CD163. Journal of Leukocyte Biology 88: 1201–1205.CrossRef
65.
Zurück zum Zitat Båve, U., M. Magnusson, M.L. Eloranta, A. Perers, G.V. Alm, and L. Rönnblom. 2003. Fc gamma RIIa is expressed on natural IFN-α-producing cells (plasmacytoid dendritic cells) and is required for the IFN-α production induced by apoptotic cells combined with lupus IgG. Journal of Immunology 171: 3296–3302.CrossRef Båve, U., M. Magnusson, M.L. Eloranta, A. Perers, G.V. Alm, and L. Rönnblom. 2003. Fc gamma RIIa is expressed on natural IFN-α-producing cells (plasmacytoid dendritic cells) and is required for the IFN-α production induced by apoptotic cells combined with lupus IgG. Journal of Immunology 171: 3296–3302.CrossRef
66.
Zurück zum Zitat Weis, N., A. Weigert, A. von Knethen, and B. Brüne. 2009. Heme oxygenase-1 contributes to an alternative macrophage activation profile induced by apoptotic cell supernatants. Molecular Biology of the Cell 20: 1280–1288.CrossRef Weis, N., A. Weigert, A. von Knethen, and B. Brüne. 2009. Heme oxygenase-1 contributes to an alternative macrophage activation profile induced by apoptotic cell supernatants. Molecular Biology of the Cell 20: 1280–1288.CrossRef
67.
Zurück zum Zitat Duong, C.Q., S.M. Bared, A. Abu-Khader, C. Buechler, A. Schmitz, and G. Schmitz. 2004. Expression of the lysophospholipid receptor family and investigation of lysophospholipid-mediated responses in human macrophages. Biochimica et Biophysica Acta 1682: 112–119.CrossRef Duong, C.Q., S.M. Bared, A. Abu-Khader, C. Buechler, A. Schmitz, and G. Schmitz. 2004. Expression of the lysophospholipid receptor family and investigation of lysophospholipid-mediated responses in human macrophages. Biochimica et Biophysica Acta 1682: 112–119.CrossRef
Metadaten
Titel
Antibody Cross-Linking of CD14 Activates MerTK and Promotes Human Macrophage Clearance of Apoptotic Neutrophils: the Dual Role of CD14 at the Crossroads Between M1 and M2c Polarization
verfasst von
Gaetano Zizzo
Philip L. Cohen
Publikationsdatum
08.08.2018
Verlag
Springer US
Erschienen in
Inflammation / Ausgabe 6/2018
Print ISSN: 0360-3997
Elektronische ISSN: 1573-2576
DOI
https://doi.org/10.1007/s10753-018-0864-x

Weitere Artikel der Ausgabe 6/2018

Inflammation 6/2018 Zur Ausgabe

Leitlinien kompakt für die Innere Medizin

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Notfall-TEP der Hüfte ist auch bei 90-Jährigen machbar

26.04.2024 Hüft-TEP Nachrichten

Ob bei einer Notfalloperation nach Schenkelhalsfraktur eine Hemiarthroplastik oder eine totale Endoprothese (TEP) eingebaut wird, sollte nicht allein vom Alter der Patientinnen und Patienten abhängen. Auch über 90-Jährige können von der TEP profitieren.

Niedriger diastolischer Blutdruck erhöht Risiko für schwere kardiovaskuläre Komplikationen

25.04.2024 Hypotonie Nachrichten

Wenn unter einer medikamentösen Hochdrucktherapie der diastolische Blutdruck in den Keller geht, steigt das Risiko für schwere kardiovaskuläre Ereignisse: Darauf deutet eine Sekundäranalyse der SPRINT-Studie hin.

Bei schweren Reaktionen auf Insektenstiche empfiehlt sich eine spezifische Immuntherapie

Insektenstiche sind bei Erwachsenen die häufigsten Auslöser einer Anaphylaxie. Einen wirksamen Schutz vor schweren anaphylaktischen Reaktionen bietet die allergenspezifische Immuntherapie. Jedoch kommt sie noch viel zu selten zum Einsatz.

Therapiestart mit Blutdrucksenkern erhöht Frakturrisiko

25.04.2024 Hypertonie Nachrichten

Beginnen ältere Männer im Pflegeheim eine Antihypertensiva-Therapie, dann ist die Frakturrate in den folgenden 30 Tagen mehr als verdoppelt. Besonders häufig stürzen Demenzkranke und Männer, die erstmals Blutdrucksenker nehmen. Dafür spricht eine Analyse unter US-Veteranen.

Update Innere Medizin

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.