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Erschienen in: Immunologic Research 4/2017

26.06.2017 | Original Article

Innate defense regulator IDR-1018 activates human mast cells through G protein-, phospholipase C-, MAPK- and NF-ĸB-sensitive pathways

verfasst von: Kensuke Yanashima, Panjit Chieosilapatham, Eri Yoshimoto, Ko Okumura, Hideoki Ogawa, François Niyonsaba

Erschienen in: Immunologic Research | Ausgabe 4/2017

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Abstract

Host defense (antimicrobial) peptides not only display antimicrobial activities against numerous pathogens but also exert a broader spectrum of immune-modulating functions. Innate defense regulators (IDRs) are a class of host defense peptides synthetically developed from natural or endogenous cationic host defense peptides. Of the IDRs developed to date, IDR-1018 is more efficient not only in killing bacteria but also in regulating the various functions of macrophages and neutrophils and accelerating the wound healing process. Because mast cells intimately participate in wound healing and a number of host defense peptides involved in wound healing are also known to activate mast cells, this study aimed to investigate the effects of IDR-1018 on mast cell activation. Here, we showed that IDR-1018 induced the degranulation of LAD2 human mast cells and caused their production of leukotrienes, prostaglandins and various cytokines and chemokines, including granulocyte-macrophage colony-stimulating factor, interleukin-8, monocyte chemoattractant protein-1 and -3, macrophage-inflammatory protein-1α and -1β, and tumor necrosis factor-α. Furthermore, IDR-1018 increased intracellular calcium mobilization and induced mast cell chemotaxis. The mast cell activation was markedly suppressed by pertussis toxin, U-73122, U0126, SB203580, JNK inhibitor II, and NF-κB activation inhibitor II, suggesting the involvement of G-protein, phospholipase C, ERK, p38, JNK and NF-κB pathways, respectively, in IDR-1018-induced mast cell activation. Notably, we confirmed that IDR-1018 caused the phosphorylation of MAPKs and IκB. Altogether, the current study suggests a novel immunomodulatory role of IDR-1018 through its ability to recruit and activate human mast cells at the sites of inflammation and wounds.

Highlights

  • We report that IDR-1018 stimulates various functions of human mast cells.
  • IDR-1018-induced mast cell activation is mediated through G protein, PLC, MAPK and NF-κB pathways.
  • IDR-1018 will be a useful therapeutic agent for wound healing.
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Literatur
1.
Zurück zum Zitat Niyonsaba F, Kiatsurayanon C, Ogawa H. The role of human beta-defensins in allergic diseases. Clin Exp Allergy. 2016;46(12):1522–30.CrossRefPubMed Niyonsaba F, Kiatsurayanon C, Ogawa H. The role of human beta-defensins in allergic diseases. Clin Exp Allergy. 2016;46(12):1522–30.CrossRefPubMed
2.
Zurück zum Zitat Niyonsaba F, Nagaoka I, Ogawa H. Human defensins and cathelicidins in the skin: beyond direct antimicrobial properties. Crit Rev Immunol. 2006;26(6):545–76.CrossRefPubMed Niyonsaba F, Nagaoka I, Ogawa H. Human defensins and cathelicidins in the skin: beyond direct antimicrobial properties. Crit Rev Immunol. 2006;26(6):545–76.CrossRefPubMed
3.
Zurück zum Zitat Niyonsaba F, Nagaoka I, Ogawa H, Okumura K. Multifunctional antimicrobial proteins and peptides: natural activators of immune systems. Curr Pharm Des. 2009;15(21):2393–413.CrossRefPubMed Niyonsaba F, Nagaoka I, Ogawa H, Okumura K. Multifunctional antimicrobial proteins and peptides: natural activators of immune systems. Curr Pharm Des. 2009;15(21):2393–413.CrossRefPubMed
4.
Zurück zum Zitat Oppenheim JJ, Yang D. Alarmins: chemotactic activators of immune responses. Curr Opin Immunol. 2005;17(4):359–65.CrossRefPubMed Oppenheim JJ, Yang D. Alarmins: chemotactic activators of immune responses. Curr Opin Immunol. 2005;17(4):359–65.CrossRefPubMed
5.
Zurück zum Zitat Hancock RE, Nijnik A, Philpott DJ. Modulating immunity as a therapy for bacterial infections. Nat Rev Microbiol. 2012;10(4):243–54.CrossRefPubMed Hancock RE, Nijnik A, Philpott DJ. Modulating immunity as a therapy for bacterial infections. Nat Rev Microbiol. 2012;10(4):243–54.CrossRefPubMed
6.
Zurück zum Zitat Yeung AT, Gellatly SL, Hancock RE. Multifunctional cationic host defence peptides and their clinical applications. Cell Mol Life Sci. 2011;68(13):2161–76.CrossRefPubMed Yeung AT, Gellatly SL, Hancock RE. Multifunctional cationic host defence peptides and their clinical applications. Cell Mol Life Sci. 2011;68(13):2161–76.CrossRefPubMed
7.
Zurück zum Zitat Easton DM, Nijnik A, Mayer ML, Hancock RE. Potential of immunomodulatory host defense peptides as novel anti-infectives. Trends Biotechnol. 2009;27(10):582–90.CrossRefPubMed Easton DM, Nijnik A, Mayer ML, Hancock RE. Potential of immunomodulatory host defense peptides as novel anti-infectives. Trends Biotechnol. 2009;27(10):582–90.CrossRefPubMed
8.
Zurück zum Zitat Scott MG, Dullaghan E, Mookherjee N, Glavas N, Waldbrook M, Thompson A, et al. An anti-infective peptide that selectively modulates the innate immune response. Nat Biotechnol. 2007;25(4):465–72.CrossRefPubMed Scott MG, Dullaghan E, Mookherjee N, Glavas N, Waldbrook M, Thompson A, et al. An anti-infective peptide that selectively modulates the innate immune response. Nat Biotechnol. 2007;25(4):465–72.CrossRefPubMed
9.
Zurück zum Zitat Nijnik A, Madera L, Ma S, Waldbrook M, Elliott MR, Easton DM, et al. Synthetic cationic peptide IDR-1002 provides protection against bacterial infections through chemokine induction and enhanced leukocyte recruitment. J Immunol. 2010;184(5):2539–50.CrossRefPubMed Nijnik A, Madera L, Ma S, Waldbrook M, Elliott MR, Easton DM, et al. Synthetic cationic peptide IDR-1002 provides protection against bacterial infections through chemokine induction and enhanced leukocyte recruitment. J Immunol. 2010;184(5):2539–50.CrossRefPubMed
10.
Zurück zum Zitat Madera L, Hancock RE. Synthetic immunomodulatory peptide IDR-1002 enhances monocyte migration and adhesion on fibronectin. J Innate Immun. 2012;4(5–6):553–68.CrossRefPubMed Madera L, Hancock RE. Synthetic immunomodulatory peptide IDR-1002 enhances monocyte migration and adhesion on fibronectin. J Innate Immun. 2012;4(5–6):553–68.CrossRefPubMed
11.
Zurück zum Zitat Madera L, Hancock RE. Anti-infective peptide IDR-1002 augments monocyte chemotaxis towards CCR5 chemokines. Biochem Biophys Res Commun. 2015;464(3):800–6.CrossRefPubMed Madera L, Hancock RE. Anti-infective peptide IDR-1002 augments monocyte chemotaxis towards CCR5 chemokines. Biochem Biophys Res Commun. 2015;464(3):800–6.CrossRefPubMed
12.
Zurück zum Zitat Niyonsaba F, Madera L, Afacan N, Okumura K, Ogawa H, Hancock RE. The innate defense regulator peptides IDR-HH2, IDR-1002, and IDR-1018 modulate human neutrophil functions. J Leukoc Biol. 2013;94(1):159–70. Niyonsaba F, Madera L, Afacan N, Okumura K, Ogawa H, Hancock RE. The innate defense regulator peptides IDR-HH2, IDR-1002, and IDR-1018 modulate human neutrophil functions. J Leukoc Biol. 2013;94(1):159–70.
13.
Zurück zum Zitat Wieczorek M, Jenssen H, Kindrachuk J, Scott WR, Elliott M, Hilpert K, et al. Structural studies of a peptide with immune modulating and direct antimicrobial activity. Chem Biol. 2010;17(9):970–80.CrossRefPubMed Wieczorek M, Jenssen H, Kindrachuk J, Scott WR, Elliott M, Hilpert K, et al. Structural studies of a peptide with immune modulating and direct antimicrobial activity. Chem Biol. 2010;17(9):970–80.CrossRefPubMed
14.
Zurück zum Zitat Pena OM, Afacan N, Pistolic J, Chen C, Madera L, Falsafi R, et al. Synthetic cationic peptide IDR-1018 modulates human macrophage differentiation. PLoS One. 2013;8(1):e52449.CrossRefPubMedPubMedCentral Pena OM, Afacan N, Pistolic J, Chen C, Madera L, Falsafi R, et al. Synthetic cationic peptide IDR-1018 modulates human macrophage differentiation. PLoS One. 2013;8(1):e52449.CrossRefPubMedPubMedCentral
15.
Zurück zum Zitat Bolouri H, Savman K, Wang W, Thomas A, Maurer N, Dullaghan E, et al. Innate defense regulator peptide 1018 protects against perinatal brain injury. Ann Neurol. 2014;75(3):395–410.CrossRefPubMed Bolouri H, Savman K, Wang W, Thomas A, Maurer N, Dullaghan E, et al. Innate defense regulator peptide 1018 protects against perinatal brain injury. Ann Neurol. 2014;75(3):395–410.CrossRefPubMed
16.
Zurück zum Zitat Steinstraesser L, Hirsch T, Schulte M, Kueckelhaus M, Jacobsen F, Mersch EA, et al. Innate defense regulator peptide 1018 in wound healing and wound infection. PLoS One. 2012;7(8):e39373.CrossRefPubMedPubMedCentral Steinstraesser L, Hirsch T, Schulte M, Kueckelhaus M, Jacobsen F, Mersch EA, et al. Innate defense regulator peptide 1018 in wound healing and wound infection. PLoS One. 2012;7(8):e39373.CrossRefPubMedPubMedCentral
17.
Zurück zum Zitat Rodewald HR, Feyerabend TB. Widespread immunological functions of mast cells: fact or fiction? Immunity. 2012;37(1):13–24.CrossRefPubMed Rodewald HR, Feyerabend TB. Widespread immunological functions of mast cells: fact or fiction? Immunity. 2012;37(1):13–24.CrossRefPubMed
19.
Zurück zum Zitat Galli SJ, Kalesnikoff J, Grimbaldeston MA, Piliponsky AM, Williams CM, Tsai M. Mast cells as “tunable” effector and immunoregulatory cells: recent advances. Annu Rev Immunol. 2005;23:749–86.CrossRefPubMed Galli SJ, Kalesnikoff J, Grimbaldeston MA, Piliponsky AM, Williams CM, Tsai M. Mast cells as “tunable” effector and immunoregulatory cells: recent advances. Annu Rev Immunol. 2005;23:749–86.CrossRefPubMed
20.
Zurück zum Zitat Moon TC, St Laurent CD, Morris KE, Marcet C, Yoshimura T, Sekar Y, et al. Advances in mast cell biology: new understanding of heterogeneity and function. Mucosal Immunol. 2010;3(2):111–28.CrossRefPubMed Moon TC, St Laurent CD, Morris KE, Marcet C, Yoshimura T, Sekar Y, et al. Advances in mast cell biology: new understanding of heterogeneity and function. Mucosal Immunol. 2010;3(2):111–28.CrossRefPubMed
21.
Zurück zum Zitat Galli SJ, Tsai M, Piliponsky AM. The development of allergic inflammation. Nature. 2008;454(7203):445–54. Galli SJ, Tsai M, Piliponsky AM. The development of allergic inflammation. Nature. 2008;454(7203):445–54.
22.
Zurück zum Zitat Maurer M, Theoharides T, Granstein RD, Bischoff SC, Bienenstock J, Henz B, et al. What is the physiological function of mast cells? Exp Dermatol. 2003;12(6):886–910.CrossRefPubMed Maurer M, Theoharides T, Granstein RD, Bischoff SC, Bienenstock J, Henz B, et al. What is the physiological function of mast cells? Exp Dermatol. 2003;12(6):886–910.CrossRefPubMed
23.
Zurück zum Zitat Beghdadi W, Madjene LC, Benhamou M, Charles N, Gautier G, Launay P, et al. Mast cells as cellular sensors in inflammation and immunity. Front Immunol. 2011;2:37.CrossRefPubMedPubMedCentral Beghdadi W, Madjene LC, Benhamou M, Charles N, Gautier G, Launay P, et al. Mast cells as cellular sensors in inflammation and immunity. Front Immunol. 2011;2:37.CrossRefPubMedPubMedCentral
25.
Zurück zum Zitat Gronberg A, Mahlapuu M, Stahle M, Whately-Smith C, Rollman O. Treatment with LL-37 is safe and effective in enhancing healing of hard-to-heal venous leg ulcers: a randomized, placebo-controlled clinical trial. Wound Repair Regen. 2014;22(5):613–21.CrossRefPubMed Gronberg A, Mahlapuu M, Stahle M, Whately-Smith C, Rollman O. Treatment with LL-37 is safe and effective in enhancing healing of hard-to-heal venous leg ulcers: a randomized, placebo-controlled clinical trial. Wound Repair Regen. 2014;22(5):613–21.CrossRefPubMed
26.
Zurück zum Zitat Hirsch T, Spielmann M, Zuhaili B, Fossum M, Metzig M, Koehler T, et al. Human beta-defensin-3 promotes wound healing in infected diabetic wounds. J Gene Med. 2009;11(3):220–8.CrossRefPubMed Hirsch T, Spielmann M, Zuhaili B, Fossum M, Metzig M, Koehler T, et al. Human beta-defensin-3 promotes wound healing in infected diabetic wounds. J Gene Med. 2009;11(3):220–8.CrossRefPubMed
27.
Zurück zum Zitat Mangoni ML, McDermott AM, Zasloff M. Antimicrobial peptides and wound healing: biological and therapeutic considerations. Exp Dermatol. 2016;25(3):167–73.CrossRefPubMedPubMedCentral Mangoni ML, McDermott AM, Zasloff M. Antimicrobial peptides and wound healing: biological and therapeutic considerations. Exp Dermatol. 2016;25(3):167–73.CrossRefPubMedPubMedCentral
28.
Zurück zum Zitat Niyonsaba F, Ushio H, Nakano N, Ng W, Sayama K, Hashimoto K, et al. Antimicrobial peptides human beta-defensins stimulate epidermal keratinocyte migration, proliferation and production of proinflammatory cytokines and chemokines. J Invest Dermatol. 2007;127(3):594–604.CrossRefPubMed Niyonsaba F, Ushio H, Nakano N, Ng W, Sayama K, Hashimoto K, et al. Antimicrobial peptides human beta-defensins stimulate epidermal keratinocyte migration, proliferation and production of proinflammatory cytokines and chemokines. J Invest Dermatol. 2007;127(3):594–604.CrossRefPubMed
29.
Zurück zum Zitat Kirshenbaum AS, Akin C, Wu Y, Rottem M, Goff JP, Beaven MA, et al. Characterization of novel stem cell factor responsive human mast cell lines LAD 1 and 2 established from a patient with mast cell sarcoma/leukemia; activation following aggregation of FcepsilonRI or FcgammaRI. Leuk Res. 2003;27(8):677–82.CrossRefPubMed Kirshenbaum AS, Akin C, Wu Y, Rottem M, Goff JP, Beaven MA, et al. Characterization of novel stem cell factor responsive human mast cell lines LAD 1 and 2 established from a patient with mast cell sarcoma/leukemia; activation following aggregation of FcepsilonRI or FcgammaRI. Leuk Res. 2003;27(8):677–82.CrossRefPubMed
30.
Zurück zum Zitat Niyonsaba F, Ushio H, Hara M, Yokoi H, Tominaga M, Takamori K, et al. Antimicrobial peptides human beta-defensins and cathelicidin LL-37 induce the secretion of a pruritogenic cytokine IL-31 by human mast cells. J Immunol. 2010;184(7):3526–34.CrossRefPubMed Niyonsaba F, Ushio H, Hara M, Yokoi H, Tominaga M, Takamori K, et al. Antimicrobial peptides human beta-defensins and cathelicidin LL-37 induce the secretion of a pruritogenic cytokine IL-31 by human mast cells. J Immunol. 2010;184(7):3526–34.CrossRefPubMed
31.
Zurück zum Zitat Aung G, Niyonsaba F, Ushio H, Kajiwara N, Saito H, Ikeda S, et al. Catestatin, a neuroendocrine antimicrobial peptide, induces human mast cell migration, degranulation and production of cytokines and chemokines. Immunology. 2011;132(4):527–39.CrossRefPubMedPubMedCentral Aung G, Niyonsaba F, Ushio H, Kajiwara N, Saito H, Ikeda S, et al. Catestatin, a neuroendocrine antimicrobial peptide, induces human mast cell migration, degranulation and production of cytokines and chemokines. Immunology. 2011;132(4):527–39.CrossRefPubMedPubMedCentral
32.
Zurück zum Zitat Chen X, Niyonsaba F, Ushio H, Hara M, Yokoi H, Matsumoto K, et al. Antimicrobial peptides human beta-defensin (hBD)-3 and hBD-4 activate mast cells and increase skin vascular permeability. Eur J Immunol. 2007;37(2):434–44.CrossRefPubMed Chen X, Niyonsaba F, Ushio H, Hara M, Yokoi H, Matsumoto K, et al. Antimicrobial peptides human beta-defensin (hBD)-3 and hBD-4 activate mast cells and increase skin vascular permeability. Eur J Immunol. 2007;37(2):434–44.CrossRefPubMed
33.
Zurück zum Zitat Niyonsaba F, Iwabuchi K, Someya A, Hirata M, Matsuda H, Ogawa H, et al. A cathelicidin family of human antibacterial peptide LL-37 induces mast cell chemotaxis. Immunology. 2002;106(1):20–6.CrossRefPubMedPubMedCentral Niyonsaba F, Iwabuchi K, Someya A, Hirata M, Matsuda H, Ogawa H, et al. A cathelicidin family of human antibacterial peptide LL-37 induces mast cell chemotaxis. Immunology. 2002;106(1):20–6.CrossRefPubMedPubMedCentral
34.
Zurück zum Zitat Niyonsaba F, Someya A, Hirata M, Ogawa H, Nagaoka I. Evaluation of the effects of peptide antibiotics human beta-defensins-1/-2 and LL-37 on histamine release and prostaglandin D(2) production from mast cells. Eur J Immunol. 2001;31(4):1066–75.CrossRefPubMed Niyonsaba F, Someya A, Hirata M, Ogawa H, Nagaoka I. Evaluation of the effects of peptide antibiotics human beta-defensins-1/-2 and LL-37 on histamine release and prostaglandin D(2) production from mast cells. Eur J Immunol. 2001;31(4):1066–75.CrossRefPubMed
35.
Zurück zum Zitat Subramanian H, Gupta K, Guo Q, Price R, Ali H. Mas-related gene X2 (MrgX2) is a novel G protein-coupled receptor for the antimicrobial peptide LL-37 in human mast cells: resistance to receptor phosphorylation, desensitization, and internalization. J Biol Chem. 2011;286(52):44739–49.CrossRefPubMedPubMedCentral Subramanian H, Gupta K, Guo Q, Price R, Ali H. Mas-related gene X2 (MrgX2) is a novel G protein-coupled receptor for the antimicrobial peptide LL-37 in human mast cells: resistance to receptor phosphorylation, desensitization, and internalization. J Biol Chem. 2011;286(52):44739–49.CrossRefPubMedPubMedCentral
36.
Zurück zum Zitat Subramanian H, Gupta K, Lee D, Bayir AK, Ahn H, Ali H. Beta-Defensins activate human mast cells via Mas-related gene X2. J Immunol. 2013;191(1):345–52.CrossRefPubMedPubMedCentral Subramanian H, Gupta K, Lee D, Bayir AK, Ahn H, Ali H. Beta-Defensins activate human mast cells via Mas-related gene X2. J Immunol. 2013;191(1):345–52.CrossRefPubMedPubMedCentral
37.
Zurück zum Zitat Schwartz LB, Austen KF, Wasserman SI. Immunologic release of beta-hexosaminidase and beta-glucuronidase from purified rat serosal mast cells. J Immunol. 1979;123(4):1445–50.PubMed Schwartz LB, Austen KF, Wasserman SI. Immunologic release of beta-hexosaminidase and beta-glucuronidase from purified rat serosal mast cells. J Immunol. 1979;123(4):1445–50.PubMed
38.
39.
Zurück zum Zitat Pundir P, Kulka M. The role of G protein-coupled receptors in mast cell activation by antimicrobial peptides: is there a connection? Immunol Cell Biol. 2010;88(6):632–40.CrossRefPubMed Pundir P, Kulka M. The role of G protein-coupled receptors in mast cell activation by antimicrobial peptides: is there a connection? Immunol Cell Biol. 2010;88(6):632–40.CrossRefPubMed
40.
Zurück zum Zitat Coneely J, Kennelly R, Bouchier-Hayes D, Winter DC. Mast cell degranulation is essential for anastomotic healing in well perfused and poorly perfused rat colon. J Surg Res. 2010;164(1):e73–6.CrossRefPubMed Coneely J, Kennelly R, Bouchier-Hayes D, Winter DC. Mast cell degranulation is essential for anastomotic healing in well perfused and poorly perfused rat colon. J Surg Res. 2010;164(1):e73–6.CrossRefPubMed
41.
42.
Zurück zum Zitat Rivas-Santiago B, Serrano CJ, Enciso-Moreno JA. Susceptibility to infectious diseases based on antimicrobial peptide production. Infect Immun. 2009;77(11):4690–5.CrossRefPubMedPubMedCentral Rivas-Santiago B, Serrano CJ, Enciso-Moreno JA. Susceptibility to infectious diseases based on antimicrobial peptide production. Infect Immun. 2009;77(11):4690–5.CrossRefPubMedPubMedCentral
43.
Zurück zum Zitat Turner-Brannen E, Choi KY, Lippert DN, Cortens JP, Hancock RE, El-Gabalawy H, et al. Modulation of interleukin-1beta-induced inflammatory responses by a synthetic cationic innate defence regulator peptide, IDR-1002, in synovial fibroblasts. Arthritis Res Ther. 2011;13(4):R129.CrossRefPubMedPubMedCentral Turner-Brannen E, Choi KY, Lippert DN, Cortens JP, Hancock RE, El-Gabalawy H, et al. Modulation of interleukin-1beta-induced inflammatory responses by a synthetic cationic innate defence regulator peptide, IDR-1002, in synovial fibroblasts. Arthritis Res Ther. 2011;13(4):R129.CrossRefPubMedPubMedCentral
44.
Zurück zum Zitat Haney EF, Mansour SC, Hilchie AL, de la Fuente-Nunez C, Hancock RE. High throughput screening methods for assessing antibiofilm and immunomodulatory activities of synthetic peptides. Peptides. 2015;71:276–85.CrossRefPubMedPubMedCentral Haney EF, Mansour SC, Hilchie AL, de la Fuente-Nunez C, Hancock RE. High throughput screening methods for assessing antibiofilm and immunomodulatory activities of synthetic peptides. Peptides. 2015;71:276–85.CrossRefPubMedPubMedCentral
45.
Zurück zum Zitat Huante-Mendoza A, Silva-Garcia O, Oviedo-Boyso J, Hancock RE, Baizabal-Aguirre VM. Peptide IDR-1002 inhibits NF-kappaB nuclear translocation by inhibition of IkappaBalpha degradation and activates p38/ERK1/2-MSK1-dependent CREB phosphorylation in macrophages stimulated with lipopolysaccharide. Front Immunol. 2016;7:533.CrossRefPubMedPubMedCentral Huante-Mendoza A, Silva-Garcia O, Oviedo-Boyso J, Hancock RE, Baizabal-Aguirre VM. Peptide IDR-1002 inhibits NF-kappaB nuclear translocation by inhibition of IkappaBalpha degradation and activates p38/ERK1/2-MSK1-dependent CREB phosphorylation in macrophages stimulated with lipopolysaccharide. Front Immunol. 2016;7:533.CrossRefPubMedPubMedCentral
46.
Zurück zum Zitat Mann A, Niekisch K, Schirmacher P, Blessing M. Granulocyte-macrophage colony-stimulating factor is essential for normal wound healing. J Investig Dermatol Symp Proc. 2006;11(1):87–92.CrossRefPubMed Mann A, Niekisch K, Schirmacher P, Blessing M. Granulocyte-macrophage colony-stimulating factor is essential for normal wound healing. J Investig Dermatol Symp Proc. 2006;11(1):87–92.CrossRefPubMed
47.
Zurück zum Zitat Williams CM, Galli SJ. Mast cells can amplify airway reactivity and features of chronic inflammation in an asthma model in mice. J Exp Med. 2000;192(3):455–62.CrossRefPubMedPubMedCentral Williams CM, Galli SJ. Mast cells can amplify airway reactivity and features of chronic inflammation in an asthma model in mice. J Exp Med. 2000;192(3):455–62.CrossRefPubMedPubMedCentral
48.
Zurück zum Zitat Gillitzer R, Goebeler M. Chemokines in cutaneous wound healing. J Leukoc Biol. 2001;69(4):513–21.PubMed Gillitzer R, Goebeler M. Chemokines in cutaneous wound healing. J Leukoc Biol. 2001;69(4):513–21.PubMed
49.
Zurück zum Zitat Johnatty RN, Taub DD, Reeder SP, Turcovski-Corrales SM, Cottam DW, Stephenson TJ, et al. Cytokine and chemokine regulation of proMMP-9 and TIMP-1 production by human peripheral blood lymphocytes. J Immunol. 1997;158(5):2327–33.PubMed Johnatty RN, Taub DD, Reeder SP, Turcovski-Corrales SM, Cottam DW, Stephenson TJ, et al. Cytokine and chemokine regulation of proMMP-9 and TIMP-1 production by human peripheral blood lymphocytes. J Immunol. 1997;158(5):2327–33.PubMed
51.
Zurück zum Zitat Engelhardt E, Toksoy A, Goebeler M, Debus S, Brocker EB, Gillitzer R. Chemokines IL-8, GROalpha, MCP-1, IP-10, and Mig are sequentially and differentially expressed during phase-specific infiltration of leukocyte subsets in human wound healing. Am J Pathol. 1998;153(6):1849–60.CrossRefPubMedPubMedCentral Engelhardt E, Toksoy A, Goebeler M, Debus S, Brocker EB, Gillitzer R. Chemokines IL-8, GROalpha, MCP-1, IP-10, and Mig are sequentially and differentially expressed during phase-specific infiltration of leukocyte subsets in human wound healing. Am J Pathol. 1998;153(6):1849–60.CrossRefPubMedPubMedCentral
52.
Zurück zum Zitat Barrientos S, Stojadinovic O, Golinko MS, Brem H, Tomic-Canic M. Growth factors and cytokines in wound healing. Wound Repair Regen. 2008;16(5):585–601.CrossRefPubMed Barrientos S, Stojadinovic O, Golinko MS, Brem H, Tomic-Canic M. Growth factors and cytokines in wound healing. Wound Repair Regen. 2008;16(5):585–601.CrossRefPubMed
53.
Zurück zum Zitat Bousquenaud M, Schwartz C, Leonard F, Rolland-Turner M, Wagner D, Devaux Y. Monocyte chemotactic protein 3 is a homing factor for circulating angiogenic cells. Cardiovasc Res. 2012;94(3):519–25.CrossRefPubMed Bousquenaud M, Schwartz C, Leonard F, Rolland-Turner M, Wagner D, Devaux Y. Monocyte chemotactic protein 3 is a homing factor for circulating angiogenic cells. Cardiovasc Res. 2012;94(3):519–25.CrossRefPubMed
54.
Zurück zum Zitat Werry TD, Wilkinson GF, Willars GB. Mechanisms of cross-talk between G-protein-coupled receptors resulting in enhanced release of intracellular Ca2+. Biochem J. 2003;374(Pt 2):281–96.CrossRefPubMedPubMedCentral Werry TD, Wilkinson GF, Willars GB. Mechanisms of cross-talk between G-protein-coupled receptors resulting in enhanced release of intracellular Ca2+. Biochem J. 2003;374(Pt 2):281–96.CrossRefPubMedPubMedCentral
55.
Zurück zum Zitat Kehrl JH. Heterotrimeric G protein signaling: roles in immune function and fine-tuning by RGS proteins. Immunity. 1998;8(1):1–10.CrossRefPubMed Kehrl JH. Heterotrimeric G protein signaling: roles in immune function and fine-tuning by RGS proteins. Immunity. 1998;8(1):1–10.CrossRefPubMed
56.
Zurück zum Zitat Knall C, Johnson GL. G-protein regulatory pathways: rocketing into the twenty-first century. J Cell Biochem Suppl. 1998;30-31:137–46.CrossRefPubMed Knall C, Johnson GL. G-protein regulatory pathways: rocketing into the twenty-first century. J Cell Biochem Suppl. 1998;30-31:137–46.CrossRefPubMed
58.
Zurück zum Zitat Pundir P, Catalli A, Leggiadro C, Douglas SE, Kulka M. Pleurocidin, a novel antimicrobial peptide, induces human mast cell activation through the FPRL1 receptor. Mucosal Immunol. 2014;7(1):177–87.CrossRefPubMed Pundir P, Catalli A, Leggiadro C, Douglas SE, Kulka M. Pleurocidin, a novel antimicrobial peptide, induces human mast cell activation through the FPRL1 receptor. Mucosal Immunol. 2014;7(1):177–87.CrossRefPubMed
59.
Zurück zum Zitat Oskeritzian CA. Mast cells and wound healing. Adv Wound Care (New Rochelle). 2012;1(1):23–8.CrossRef Oskeritzian CA. Mast cells and wound healing. Adv Wound Care (New Rochelle). 2012;1(1):23–8.CrossRef
60.
Zurück zum Zitat Tatemoto K, Nozaki Y, Tsuda R, Konno S, Tomura K, Furuno M, et al. Immunoglobulin E-independent activation of mast cell is mediated by Mrg receptors. Biochem Biophys Res Commun. 2006;349(4):1322–8.CrossRefPubMed Tatemoto K, Nozaki Y, Tsuda R, Konno S, Tomura K, Furuno M, et al. Immunoglobulin E-independent activation of mast cell is mediated by Mrg receptors. Biochem Biophys Res Commun. 2006;349(4):1322–8.CrossRefPubMed
61.
Zurück zum Zitat Lembo PM, Grazzini E, Groblewski T, O'Donnell D, Roy MO, Zhang J, et al. Proenkephalin A gene products activate a new family of sensory neuron--specific GPCRs. Nat Neurosci. 2002;5(3):201–9.CrossRefPubMed Lembo PM, Grazzini E, Groblewski T, O'Donnell D, Roy MO, Zhang J, et al. Proenkephalin A gene products activate a new family of sensory neuron--specific GPCRs. Nat Neurosci. 2002;5(3):201–9.CrossRefPubMed
62.
Zurück zum Zitat Kiatsurayanon C, Niyonsaba F, Chieosilapatham P, Okumura K, Ikeda S, Ogawa H. Angiogenic peptide (AG)-30/5C activates human keratinocytes to produce cytokines/chemokines and to migrate and proliferate via MrgX receptors. J Dermatol Sci. 2016;83(3):190–9.CrossRefPubMed Kiatsurayanon C, Niyonsaba F, Chieosilapatham P, Okumura K, Ikeda S, Ogawa H. Angiogenic peptide (AG)-30/5C activates human keratinocytes to produce cytokines/chemokines and to migrate and proliferate via MrgX receptors. J Dermatol Sci. 2016;83(3):190–9.CrossRefPubMed
63.
Zurück zum Zitat Ferry X, Brehin S, Kamel R, Landry Y. G protein-dependent activation of mast cell by peptides and basic secretagogues. Peptides. 2002;23(8):1507–15.CrossRefPubMed Ferry X, Brehin S, Kamel R, Landry Y. G protein-dependent activation of mast cell by peptides and basic secretagogues. Peptides. 2002;23(8):1507–15.CrossRefPubMed
64.
Zurück zum Zitat Ballif BA, Blenis J. Molecular mechanisms mediating mammalian mitogen-activated protein kinase (MAPK) kinase (MEK)-MAPK cell survival signals. Cell Growth Differ. 2001;12(8):397–408.PubMed Ballif BA, Blenis J. Molecular mechanisms mediating mammalian mitogen-activated protein kinase (MAPK) kinase (MEK)-MAPK cell survival signals. Cell Growth Differ. 2001;12(8):397–408.PubMed
65.
66.
Zurück zum Zitat Chen X, Niyonsaba F, Ushio H, Nagaoka I, Ikeda S, Okumura K, et al. Human cathelicidin LL-37 increases vascular permeability in the skin via mast cell activation, and phosphorylates MAP kinases p38 and ERK in mast cells. J Dermatol Sci. 2006;43(1):63–6.CrossRefPubMed Chen X, Niyonsaba F, Ushio H, Nagaoka I, Ikeda S, Okumura K, et al. Human cathelicidin LL-37 increases vascular permeability in the skin via mast cell activation, and phosphorylates MAP kinases p38 and ERK in mast cells. J Dermatol Sci. 2006;43(1):63–6.CrossRefPubMed
Metadaten
Titel
Innate defense regulator IDR-1018 activates human mast cells through G protein-, phospholipase C-, MAPK- and NF-ĸB-sensitive pathways
verfasst von
Kensuke Yanashima
Panjit Chieosilapatham
Eri Yoshimoto
Ko Okumura
Hideoki Ogawa
François Niyonsaba
Publikationsdatum
26.06.2017
Verlag
Springer US
Erschienen in
Immunologic Research / Ausgabe 4/2017
Print ISSN: 0257-277X
Elektronische ISSN: 1559-0755
DOI
https://doi.org/10.1007/s12026-017-8932-0

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