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首页> 外文期刊>The Journal of biological chemistry >RNF13, a RING Finger Protein, Mediates Endoplasmic Reticulum Stress-induced Apoptosis through the Inositol-requiring Enzyme (IRE1α)/c-Jun NH2-terminal Kinase Pathway
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RNF13, a RING Finger Protein, Mediates Endoplasmic Reticulum Stress-induced Apoptosis through the Inositol-requiring Enzyme (IRE1α)/c-Jun NH2-terminal Kinase Pathway

机译:RNF13,一个无名指蛋白,通过肌醇需要酶(IRE1α)/ C-Jun NH2末端激酶途径介导内质网胁迫诱导的细胞凋亡

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Disturbance of homeostasis at endoplasmic reticulum (ER) causes stress to cells that in turn triggers an adaptive signaling pathway termed unfolded protein response for the purpose of restoring normal cellular physiology or initiating signaling events leading to apoptosis. Identification of those genes that are involved in the unfolded protein response-mediated apoptotic signaling pathway would be valuable toward elucidating the molecular mechanism underlying the relationship between ER stress and apoptosis. We initiated a genetic screen by using the retroviral insertion mutation system to search for genes whose inactivation confers resistance to apoptosis induction by staurosporine. Using this approach, RING finger protein 13 (RNF13) was identified. Interestingly, RNF13 is highly enriched in ER. RNF13 knockdown cells are resistant to apoptosis and JNK activation triggered by ER stress. Conversely, overexpression of RNF13 induces JNK activation and caspase-dependent apoptosis. The RING and transmembrane domains of RNF13 are both required for its effects on JNK activation and apoptosis. Moreover, systematic analysis of the involvement of individual signaling components in the ER stress pathway using knockdown approach reveals that RNF13 acts upstream of the IRE1α-TRAF2 signaling axis for JNK activation and apoptosis. Finally, RNF13 co-immunoprecipitates with IRE1α, and the intact RING domain is also required for mediating its interaction. Together, our data support a model that RNF13 is a critical mediator for facilitating ER stress-induced apoptosis through the activation of the IRE1α-TRAF2-JNK signaling pathway.
机译:在内质网(ER)处的稳态使得对细胞的应力导致又触发了展开的适应性信号通路,其用于恢复正常细胞生理学或启动导致细胞凋亡的信号事件的目的。鉴定涉及展开蛋白响应介导的凋亡信号传导途径的那些基因对于阐明的分子机制,阐述了ER应激和细胞凋亡之间的关系。我们通过使用逆转录病毒插入突变系统来搜索遗传筛网,以寻找灭活的基因,其灭活赋予Staurosporine的凋亡诱导诱导。使用这种方法,鉴定了无戒指蛋白13(RNF13)。有趣的是,RNF13在ER中高度丰富。 RNF13敲低细胞对ER应力引发的凋亡和JNK激活是抗性的。相反,RNF13的过表达诱导JNK活化和依赖胱天冬酶的细胞凋亡。 RNF13的环和跨膜结构域都需要其对JNK激活和细胞凋亡的影响。此外,使用敲低方法对ER应力途径中的个体信号传导组分的涉及的系统分析表明,RNF13作用于JNK活化和细胞凋亡的IS1α-TRAF2信号轴的上游。最后,RNF13用IRE1α共同免疫沉淀,并且还需要介导其相互作用所需的完整环结构域。我们的数据支持一种模型,即RNF13是一种临界介质,用于通过激活IS1α-Traf2-JNK信号通路来促进ER应激诱导的细胞凋亡。

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