4.7 Article

Exploring the effects of tert-butylhydroperoxide induced liver injury using proteomic approach

期刊

TOXICOLOGY
卷 316, 期 -, 页码 61-70

出版社

ELSEVIER IRELAND LTD
DOI: 10.1016/j.tox.2013.12.007

关键词

t-BHP; ETFA; ROS; IRE1-alpha/TRAF2; JNK1/2; NF kappa B

资金

  1. Chang Gung Memorial Hospital-Kaohsiung Medical Center [CZRPG880253, CMRPF6A0073, CMRPF6C0031, CMRPG6B0271, CMRPG6B0272, EZRPF6C0011]
  2. Chang Gung Memorial Hospital
  3. Chang Gung University of Science and Technology
  4. Chia-Yi Campus, Taiwan
  5. National Science Council, Taiwan [NSC101-2622-B255-001-CC3, NSC102-2313-B-255-002]
  6. Taichung Veterans General Hospital, Taichung, Taiwan [TCVGH-1024302C]

向作者/读者索取更多资源

Tert-butyl hydroperoxide (t-BHP), an organic lipid hydroperoxide analog, has been demonstrated to exert pro-oxidant effects to evaluate mechanisms involving oxidative stress in hepatocyte cells and rat liver. Herein, we present an investigation of the event of molecular mechanism of t-BHP related acute liver injury. A proteomic approach was used to identify proteins which are differentially expressed in liver cells following t-BHP treatment and the mechanism of its action in apoptotic and endoplasmic reticulum stress pathways. Our results demonstrate that the t-BHP treatment of liver cells increased cell cytoxicity and apoptosis. t-BHP dose-dependent induction of cell apoptosis and stained liver sections relieved the acute rat liver injury were accompanied by sustained phosphorylation of JNK1/2 and p65. In addition, there were 13 differentially displayed proteins between the t-BHP-induced and untreated were assayed and validated in vivo. Furthermore, we demonstrated that t-BHP induced human Chang liver cell viability and apoptosis properties by up-regulating the levels of ETFA (electron transfer flavoprotein subunit alpha). This study demonstrated that there was an increase in the cellular levels of ETFA in the t-BHP induction in viability and apoptosis via the activation of JNK1/2 and NF kappa B signaling modules. NAC administration and shRNA ETFA conferred resistance to t-BHP-increased ETFA and CHOP expression via IRE1-alpha/TRAF2 complex formation, activation of JNK1/2 and p50. We concluded that the mechanism of t-BHP-induced an apoptosis cascade and endoplasmic reticulum stress in hepatocyte cells by up-regulation of ETFA, providing a new mechanism for liver injury. (C) 2013 Elsevier Ireland Ltd. All rights reserved.

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