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Endoplasmic reticulum stress enhances fibrosis through IRE1α‐mediated degradation of miR‐150 and XBP‐1 splicing

机译:内质网应激通过IRE1α介导的miR-150和XBP-1剪接降解而增强纤维化

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摘要

ER stress results in activation of the unfolded protein response and has been implicated in the development of fibrotic diseases. In this study, we show that inhibition of the ER stress‐induced IRE1α signaling pathway, using the inhibitor 4μ8C, blocks TGFβ‐induced activation of myofibroblasts in vitro, reduces liver and skin fibrosis in vivo, and reverts the fibrotic phenotype of activated myofibroblasts isolated from patients with systemic sclerosis. By using IRE1α−/− fibroblasts and expression of IRE1α‐mutant proteins lacking endoribonuclease activity, we confirmed that IRE1α plays an important role during myofibroblast activation. IRE1α was shown to cleave miR‐150 and thereby to release the suppressive effect that miR‐150 exerted on αSMA expression through c‐Myb. Inhibition of IRE1α was also demonstrated to block ER expansion through an XBP‐1‐dependent pathway. Taken together, our results suggest that ER stress could be an important and conserved mechanism in the pathogenesis of fibrosis and that components of the ER stress pathway may be therapeutically relevant for treating patients with fibrotic diseases.
机译:内质网应激导致未折叠的蛋白反应的激活,并与纤维化疾病的发展有关。在这项研究中,我们表明使用抑制剂4μ8C抑制ER应激诱导的IRE1α信号通路,阻断TGFβ诱导的体外成纤维细胞活化,减少体内肝脏和皮肤纤维化,并恢复分离的活化成纤维细胞的纤维化表型。来自全身性硬化症患者。通过使用IRE1α-/-成纤维细胞和缺乏内切核糖核酸酶活性的IRE1α突变蛋白的表达,我们证实了IRE1α在成肌纤维细胞激活过程中起着重要作用。结果表明,IRE1α可以裂解miR-150,从而通过c-Myb释放miR-150对αSMA表达的抑制作用。 IRE1α的抑制也被证明可以通过XBP-1依赖性途径阻止ER扩展。综上所述,我们的结果表明内质网应激可能是纤维化发病机制中重要且保守的机制,内质网应激通路的组成部分可能与治疗纤维化疾病的患者在治疗上相关。

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