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Transcriptional Regulation of the Ufm1 Conjugation System in Response to Disturbance of the Endoplasmic Reticulum Homeostasis and Inhibition of Vesicle Trafficking

机译:在Ufm1共轭体系的转录调控在应对小泡运输的内质网动态平衡和抑制干扰

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摘要

Homeostasis of the endoplasmic reticulum (ER) is essential for normal cellular functions. Disturbance of this homeostasis causes ER stress and activates the Unfolded Protein Response (UPR). The Ufm1 conjugation system is a novel Ubiquitin-like (Ubl) system whose physiological target(s) and biological functions remain largely undefined. Genetic study has demonstrated that the Ufm1-activating enzyme Uba5 is indispensible for erythroid differentiation in mice, highlighting the importance of this novel system in animal development. In this report we present the evidence for involvement of RCAD/Ufl1, a putative Ufm1-specific E3 ligase, and its binding partner C53/LZAP protein in ufmylation of endogenous Ufm1 targets. Moreover, we found that the Ufm1 system was transcriptionally up-regulated by disturbance of the ER homeostasis and inhibition of vesicle trafficking. Using luciferase reporter and ChIP assays, we dissected the Ufm1 promoter and found that Ufm1 was a potential target of Xbp-1, one of crucial transcription factors in UPR. We further examined the effect of Xbp-1 deficiency on the expression of the Ufm1 components. Interestingly, the expression of Ufm1, Uba5, RCAD/Ufl1 and C53/LZAP in wild-type mouse embryonic fibroblasts (MEFs) was significantly induced by inhibition of vesicle trafficking, but the induction was negated by Xbp-1 deficiency. Finally, we found that knockdown of the Ufm1 system in U2OS cells triggered UPR and amplification of the ER network. Taken together, our study provided critical insight into the regulatory mechanism of the Ufm1 system and established a direct link between this novel Ubl system and the ER network.
机译:内质网(ER)的稳态对于正常细胞功能至关重要。这种动态平衡的紊乱会引起内质网应激,并激活未折叠蛋白反应(UPR)。 Ufm1偶联系统是一种新型的泛素样(Ubl)系统,其生理指标和生物学功能在很大程度上尚未确定。遗传研究表明,Ufm1激活酶Uba5对于小鼠类红细胞分化是必不可少的,这突显了这种新型系统在动物发育中的重要性。在本报告中,我们提供了证据,证明内源性Ufm1靶标的丁二酰化涉及RCAD / Ufl1,一种假定的Ufm1特异性E3连接酶及其结合伴侣C53 / LZAP蛋白。此外,我们发现,Ufm1系统在转录水平上受到内质网稳态的干扰和囊泡运输的抑制。使用萤光素酶报告基因和ChIP分析,我们解剖了Ufm1启动子,发现Ufm1是Xbp-1的潜在靶标,Xbp-1是UPR中的关键转录因子之一。我们进一步检查了Xbp-1缺乏对Ufm1组件表达的影响。有趣的是,Ufm1,Uba5,RCAD / Ufl1和C53 / LZAP在野生型小鼠胚胎成纤维细胞(MEFs)中的表达被抑制的囊泡运输而显着诱导,但Xbp-1缺乏则使该表达被否定。最后,我们发现在U2OS细胞中击倒Ufm1系统触发了UPR和ER网络的放大。两者合计,我们的研究提供了对Ufm1系统的监管机制的批判性见解,并建立了这种新颖的Ubl系统和ER网络之间的直接链接。

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