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首页> 外文期刊>Science Advances >The translocon-associated protein (TRAP) complex regulates quality control of N-linked glycosylation during ER stress
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The translocon-associated protein (TRAP) complex regulates quality control of N-linked glycosylation during ER stress

机译:易转膜相关蛋白(捕集器)复合物调节ER应力期间N键合糖基化的质量控制

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Asparagine (N)–linked glycosylation is required for endoplasmic reticulum (ER) homeostasis, but how this co- and posttranslational modification is maintained during ER stress is unknown. Here, we introduce a fluorescence-based strategy to detect aberrant N-glycosylation in individual cells and identify a regulatory role for the heterotetrameric translocon-associated protein (TRAP) complex. Unexpectedly, cells with knockout of SSR3 or SSR4 subunits restore N-glycosylation over time concurrent with a diminished ER stress transcriptional signature. Activation of ER stress or silencing of the ER chaperone BiP exacerbates or rescues the glycosylation defects, respectively, indicating that SSR3 and SSR4 enable N-glycosylation during ER stress. Protein levels of the SSR3 subunit are ER stress and UBE2J1 dependent, revealing a mechanism that coordinates upstream N-glycosylation proficiency with downstream ER-associated degradation and proteostasis. The fidelity of N-glycosylation is not static in both nontransformed and tumor cells, and the TRAP complex regulates ER glycoprotein quality control under conditions of stress.
机译:上氨酰胺(N) - 链接糖基化是用于内质网(ER)稳态所需的,但如何在ER应力期间保持这种共同和后期修饰是如何保持的。这里,我们介绍一种基于荧光的策略来检测单个细胞中的异常N-糖基化,并鉴定异淀粉类化合物相关蛋白(捕集)复合物的调节作用。出乎意料地,具有敲除SSR3或SSR4亚基的细胞随时间恢复N-糖基化,同时同时递减ER应激转录签名。 ER伴侣BIP的ER应激或沉默的激活分别加剧或抵抗糖基化缺陷,表明SSR3和SSR4在ER应力期间能够进行N-糖基化。 SSR3亚基的蛋白质水平是ER应激和UBE2J1依赖性,揭示了一种与下游静脉相关的降解和蛋白质的上游N-糖基化熟练组成的机制。在非转化和肿瘤细胞中,N-糖基化的保真度在非转化和肿瘤细胞中不静止,并且陷阱复合物在压力条件下调节ER糖蛋白质量控制。

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