Distinct endoplasmic reticulum stress responses are triggered during human liver transplantation

被引:52
作者
Emadali, A
Nguyên, DT
Rochon, C
Tzimas, GN
Metrakos, PP
Chevet, E [1 ]
机构
[1] McGill Univ, Dept Surg, Organelle Signaling Lab, Montreal, PQ H3A 1A1, Canada
[2] McGill Univ, Dept Surg, Transplantat & Hepatobiliary Res Grp, Montreal, PQ H3A 1A1, Canada
关键词
ischaemia; reperfusion; liver transplantation; secretion pathway; endoplasmic reticulum; unfolded protein response; IRE-1; MAPK/SAPK; PERK; sinusoidal endothelial cells;
D O I
10.1002/path.1798
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Injury due to cold ischaemia-reperfusion (IR) represents a major cause of primary graft non-function following human liver transplantation. This major cellular response translates into a dramatic decrease in intracellular ATP concentration during the ischaemic phase, thus sensitizing cells to reperfusion shock. We postulated that IR-induced cellular damage might cause alterations of the secretory pathway, particularly at the level of endoplasmic reticulum (ER) function. Under these circumstances, the ER triggers an adaptive response named the 'unfolded protein response' (UPR). In this study, we show that the expression of BiP, CHOP/GADD153 and GADD34, known to be induced specifically upon ER stress, are differentially affected upon IR, thus suggesting that distinct ER stress responses are activated during each phase of transplantation. With an approach combining semi-quantitative RT-PCR and immunoblotting using phospho-specific antibodies, we show that the IRE-1 pathway is activated upon early ischaemia and, in a second phase, upon early reperfusion. This occurs through the atypical splicing of XBP-1 mRNA, its translation into a transcriptionally active XBP-1 protein and the subsequent increase in EDEM mRNA expression, and may also contribute to the observed reperfusion-induced activation of MAPK/SAPK. In contrast, we demonstrate that the PERK pathway, leading to inhibition of cap-dependent translation, is mainly activated upon reperfusion, as shown by PERK and eIF2 alpha phosphorylation. PERK activation is detected restrictively in sinusoidal endothelial cells and could contribute to the exaggerated sensivity of this liver cell type to IR injury. These results correlate well with the observed defect in protein secretion and suggest that the biphasic ER stress response may influence liver secretory functions and, as a consequence, condition liver transplantation outcomes. Copyright (c) 2005 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.
引用
收藏
页码:111 / 118
页数:8
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