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Erschienen in: Inflammation 1/2019

10.09.2018 | ORIGINAL ARTICLE

Cysteine thiol oxidation on SIRT2 regulates inflammation in obese mice with sepsis

verfasst von: Xianfeng Wang, Nancy L. Buechler, David L. Long, Cristina M. Furdui, Barbara K. Yoza, Charles E. McCall, Vidula Vachharajani

Erschienen in: Inflammation | Ausgabe 1/2019

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Abstract

Obesity increases morbidity and mortality in acute illnesses such as sepsis and septic shock. We showed previously that the early/hyper-inflammatory phase of sepsis is exaggerated in obese mice with sepsis; sirtuin 2 (SIRT2) modulates sepsis inflammation in obesity. Evidence suggests that obesity with sepsis is associated with increased oxidative stress. It is unknown whether exaggerated hyper-inflammation of obesity with sepsis modulates the SIRT2 function in return. We showed recently that SIRT6 oxidation during hyper-inflammation of sepsis modulates its glycolytic function. This study tested the hypothesis that increased oxidative stress and direct SIRT2 oxidation exaggerate hyper-inflammation in obesity with sepsis. Using spleen and liver tissue from mice with diet-induced obesity (DIO) we studied oxidized vs. total SIRT2 expression during hyper- and hypo-inflammation of sepsis. To elucidate the mechanism of SIRT2 oxidation (specific modifications of redox-sensitive cysteines) and its effect on inflammation, we performed site-directed mutations of redox-sensitive cysteines Cys221 and Cys224 on SIRT2 to serine (C221S and C224S), transfected HEK293 cells with mutants or WT SIRT2, and studied SIRT2 enzymatic activity and NFĸBp65 deacetylation. Finally, we studied the effect of SIRT2 mutation on LPS-induced inflammation using RAW 264.7 macrophages. In an inverse relationship, total SIRT2 decreased while oxidized SIRT2 expression increased during hyper-inflammation and SIRT2 was unable to deacetylate NFĸBp65 with increased oxidative stress of obesity with sepsis. Mechanistically, both the mutants (C221S and C224S) show decreased (1) SIRT2 enzymatic activity, (2) deacetylation of NFĸBp65, and (3) anti-inflammatory activity in response to LPS vs. WT SIRT2. Direct oxidation modulates SIRT2 function during hyper-inflammatory phase of obesity with sepsis via redox sensitive cysteines.
Literatur
2.
Zurück zum Zitat Torio, C. M., and B. J. Moore. 2006. National Inpatient Hospital Costs: The Most Expensive Conditions by Payer, 2013: Statistical Brief #204. In Healthcare Cost and Utilization Project (HCUP) Statistical Briefs. Rockville (MD). Torio, C. M., and B. J. Moore. 2006. National Inpatient Hospital Costs: The Most Expensive Conditions by Payer, 2013: Statistical Brief #204. In Healthcare Cost and Utilization Project (HCUP) Statistical Briefs. Rockville (MD).
5.
Zurück zum Zitat Vachharajani, V.T., T. Fu Liu, C.M. Brown, X. Wang, N.L. Buechler, J.D. Wells, B.K. Yoza, and C.E. McCall. 2014. SIRT1 inhibition during the hypoinflammatory phenotype of sepsis enhances immunity and improves outcome. Journal of Leukocyte Biology. https://doi.org/10.1189/jlb.3MA0114-034RR. Vachharajani, V.T., T. Fu Liu, C.M. Brown, X. Wang, N.L. Buechler, J.D. Wells, B.K. Yoza, and C.E. McCall. 2014. SIRT1 inhibition during the hypoinflammatory phenotype of sepsis enhances immunity and improves outcome. Journal of Leukocyte Biology. https://​doi.​org/​10.​1189/​jlb.​3MA0114-034RR.
8.
Zurück zum Zitat Goncalves Damascena, K., C. Batisti Ferreira, P. Dos Santos Teixeira, B. Madrid, A. Goncalves, C. Cordova, O. de Toledo Nobrega, and A. Pimentel Ferreira. 2017. Functional capacity and obesity reflect the cognitive performance of older adults living in long-term care facilities. Psychogeriatrics 17 (6): 439–445. https://doi.org/10.1111/psyg.12273.CrossRefPubMed Goncalves Damascena, K., C. Batisti Ferreira, P. Dos Santos Teixeira, B. Madrid, A. Goncalves, C. Cordova, O. de Toledo Nobrega, and A. Pimentel Ferreira. 2017. Functional capacity and obesity reflect the cognitive performance of older adults living in long-term care facilities. Psychogeriatrics 17 (6): 439–445. https://​doi.​org/​10.​1111/​psyg.​12273.CrossRefPubMed
11.
Zurück zum Zitat Arabi, Y. M., S. I. Dara, H. M. Tamim, A. H. Rishu, A. Bouchama, M. K. Khedr, D. Feinstein et al. . 2013. Clinical characteristics, sepsis interventions and outcomes in the obese patients with septic shock: An international multicenter cohort study. Critical Care 17 (2):R72. https://doi.org/10.1186/cc12680. Arabi, Y. M., S. I. Dara, H. M. Tamim, A. H. Rishu, A. Bouchama, M. K. Khedr, D. Feinstein et al. . 2013. Clinical characteristics, sepsis interventions and outcomes in the obese patients with septic shock: An international multicenter cohort study. Critical Care 17 (2):R72. https://​doi.​org/​10.​1186/​cc12680.
20.
Zurück zum Zitat Wang, X., N.L. Buechler, B.K. Yoza, C.E. McCall, and V.T. Vachharajani. 2015. Resveratrol attenuates microvascular inflammation in sepsis via SIRT-1-induced modulation of adhesion molecules in ob/ob mice. Obesity (Silver Spring) 23 (6): 1209–1217. https://doi.org/10.1002/oby.21086.CrossRef Wang, X., N.L. Buechler, B.K. Yoza, C.E. McCall, and V.T. Vachharajani. 2015. Resveratrol attenuates microvascular inflammation in sepsis via SIRT-1-induced modulation of adhesion molecules in ob/ob mice. Obesity (Silver Spring) 23 (6): 1209–1217. https://​doi.​org/​10.​1002/​oby.​21086.CrossRef
21.
Zurück zum Zitat Liu, T.F., V. Vachharajani, P. Millet, M.S. Bharadwaj, A.J. Molina, and C.E. McCall. 2015. Sequential actions of SIRT1-RELB-SIRT3 coordinate nuclear-mitochondrial communication during immunometabolic adaptation to acute inflammation and sepsis. The Journal of Biological Chemistry 290 (1): 396–408. https://doi.org/10.1074/jbc.M114.566349.CrossRefPubMed Liu, T.F., V. Vachharajani, P. Millet, M.S. Bharadwaj, A.J. Molina, and C.E. McCall. 2015. Sequential actions of SIRT1-RELB-SIRT3 coordinate nuclear-mitochondrial communication during immunometabolic adaptation to acute inflammation and sepsis. The Journal of Biological Chemistry 290 (1): 396–408. https://​doi.​org/​10.​1074/​jbc.​M114.​566349.CrossRefPubMed
32.
Zurück zum Zitat Krishnan, J., C. Danzer, T. Simka, J. Ukropec, K.M. Walter, S. Kumpf, P. Mirtschink, et al. 2012. Dietary obesity-associated Hif1alpha activation in adipocytes restricts fatty acid oxidation and energy expenditure via suppression of the Sirt2-NAD+ system. Genes & Development 26 (3): 259–270. https://doi.org/10.1101/gad.180406.111. CrossRef Krishnan, J., C. Danzer, T. Simka, J. Ukropec, K.M. Walter, S. Kumpf, P. Mirtschink, et al. 2012. Dietary obesity-associated Hif1alpha activation in adipocytes restricts fatty acid oxidation and energy expenditure via suppression of the Sirt2-NAD+ system. Genes & Development 26 (3): 259–270. https://​doi.​org/​10.​1101/​gad.​180406.​111.​ CrossRef
41.
Zurück zum Zitat Vieira, A.A., M. Michels, D. Florentino, D.Z. Nascimento, G.T. Rezin, D.D. Leffa, J.J. Fortunato, et al. 2015. Obesity promotes oxidative stress and exacerbates sepsis-induced brain damage. Current Neurovascular Research 12 (2): 147–154.CrossRef Vieira, A.A., M. Michels, D. Florentino, D.Z. Nascimento, G.T. Rezin, D.D. Leffa, J.J. Fortunato, et al. 2015. Obesity promotes oxidative stress and exacerbates sepsis-induced brain damage. Current Neurovascular Research 12 (2): 147–154.CrossRef
43.
Zurück zum Zitat Qian, J., C. Klomsiri, M.W. Wright, S.B. King, A.W. Tsang, L.B. Poole, and C.M. Furdui. 2011. Simple synthesis of 1,3-cyclopentanedione derived probes for labeling sulfenic acid proteins. Chemical Communication (Camb) 47 (32): 9203–9205. https://doi.org/10.1039/c1cc12127h.CrossRef Qian, J., C. Klomsiri, M.W. Wright, S.B. King, A.W. Tsang, L.B. Poole, and C.M. Furdui. 2011. Simple synthesis of 1,3-cyclopentanedione derived probes for labeling sulfenic acid proteins. Chemical Communication (Camb) 47 (32): 9203–9205. https://​doi.​org/​10.​1039/​c1cc12127h.CrossRef
44.
Zurück zum Zitat Vachharajani, V., J.M. Russell, K.L. Scott, S. Conrad, K.Y. Stokes, L. Tallam, J. Hall, and D.N. Granger. 2005. Obesity exacerbates sepsis-induced inflammation and microvascular dysfunction in mouse brain. Microcirculation 12 (2): 183–194.CrossRef Vachharajani, V., J.M. Russell, K.L. Scott, S. Conrad, K.Y. Stokes, L. Tallam, J. Hall, and D.N. Granger. 2005. Obesity exacerbates sepsis-induced inflammation and microvascular dysfunction in mouse brain. Microcirculation 12 (2): 183–194.CrossRef
48.
Zurück zum Zitat Ballard, D.W., E.P. Dixon, N.J. Peffer, H. Bogerd, S. Doerre, B. Stein, and W.C. Greene. 1992. The 65-kDa subunit of human NF-kappa B functions as a potent transcriptional activator and a target for v-Rel-mediated repression. Proceedings of the National Academy of Sciences of the United States of America 89 (5): 1875–1879.CrossRef Ballard, D.W., E.P. Dixon, N.J. Peffer, H. Bogerd, S. Doerre, B. Stein, and W.C. Greene. 1992. The 65-kDa subunit of human NF-kappa B functions as a potent transcriptional activator and a target for v-Rel-mediated repression. Proceedings of the National Academy of Sciences of the United States of America 89 (5): 1875–1879.CrossRef
49.
Zurück zum Zitat North, B.J., B.L. Marshall, M.T. Borra, J.M. Denu, and E. Verdin. 2003. The human Sir2 ortholog, SIRT2, is an NAD+−dependent tubulin deacetylase. Molecular Cell 11 (2): 437–444.CrossRef North, B.J., B.L. Marshall, M.T. Borra, J.M. Denu, and E. Verdin. 2003. The human Sir2 ortholog, SIRT2, is an NAD+−dependent tubulin deacetylase. Molecular Cell 11 (2): 437–444.CrossRef
50.
Zurück zum Zitat Sherman, J.M., E.M. Stone, L.L. Freeman-Cook, C.B. Brachmann, J.D. Boeke, and L. Pillus. 1999. The conserved core of a human SIR2 homologue functions in yeast silencing. Molecular Biology of the Cell 10 (9): 3045–3059.CrossRef Sherman, J.M., E.M. Stone, L.L. Freeman-Cook, C.B. Brachmann, J.D. Boeke, and L. Pillus. 1999. The conserved core of a human SIR2 homologue functions in yeast silencing. Molecular Biology of the Cell 10 (9): 3045–3059.CrossRef
59.
Zurück zum Zitat Li, Y. P., J. Huang, S. G. Huang, Y. G. Xu, Y. Y. Xu, J. Y. Liao, X. Feng, X. G. Zhang, J. H. Wang, and J. Wang. 2014. The compromised inflammatory response to bacterial components after pediatric cardiac surgery is associated with cardiopulmonary bypass-suppressed toll-like receptor signal transduction pathways. Journal of Critical Care 29 (2):312 e317–313. https://doi.org/10.1016/j.jcrc.2013.10.008. Li, Y. P., J. Huang, S. G. Huang, Y. G. Xu, Y. Y. Xu, J. Y. Liao, X. Feng, X. G. Zhang, J. H. Wang, and J. Wang. 2014. The compromised inflammatory response to bacterial components after pediatric cardiac surgery is associated with cardiopulmonary bypass-suppressed toll-like receptor signal transduction pathways. Journal of Critical Care 29 (2):312 e317–313. https://​doi.​org/​10.​1016/​j.​jcrc.​2013.​10.​008.
65.
Zurück zum Zitat Dryden, S.C., F.A. Nahhas, J.E. Nowak, A.S. Goustin, and M.A. Tainsky. 2003. Role for human SIRT2 NAD-dependent deacetylase activity in control of mitotic exit in the cell cycle. Molecular and Cellular Biology 23 (9): 3173–3185.CrossRef Dryden, S.C., F.A. Nahhas, J.E. Nowak, A.S. Goustin, and M.A. Tainsky. 2003. Role for human SIRT2 NAD-dependent deacetylase activity in control of mitotic exit in the cell cycle. Molecular and Cellular Biology 23 (9): 3173–3185.CrossRef
Metadaten
Titel
Cysteine thiol oxidation on SIRT2 regulates inflammation in obese mice with sepsis
verfasst von
Xianfeng Wang
Nancy L. Buechler
David L. Long
Cristina M. Furdui
Barbara K. Yoza
Charles E. McCall
Vidula Vachharajani
Publikationsdatum
10.09.2018
Verlag
Springer US
Erschienen in
Inflammation / Ausgabe 1/2019
Print ISSN: 0360-3997
Elektronische ISSN: 1573-2576
DOI
https://doi.org/10.1007/s10753-018-0881-9

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