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The unfolded protein response and endoplasmic reticulum protein targeting machineries converge on the stress sensor IRE1

机译:展开的蛋白反应和内质网蛋白靶向机制汇聚在应力传感器IRE1上

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The protein folding capacity of the endoplasmic reticulum (ER) is tightly regulated by a network of signaling pathways, known as the unfolded protein response (UPR). UPR sensors monitor the ER folding status to adjust ER folding capacity according to need. To understand how the UPR sensor IRE1 maintains ER homeostasis, we identified zero-length crosslinks of RNA to IRE1 with single nucleotide precision in vivo. We found that IRE1 specifically crosslinks to a subset of ER-targeted mRNAs, SRP RNA, ribosomal and transfer RNAs. Crosslink sites cluster in a discrete region of the ribosome surface spanning from the A-site to the polypeptide exit tunnel. Moreover, IRE1 binds to purified 80S ribosomes with high affinity, indicating association with ER-bound ribosomes. Our results suggest that the ER protein translocation and targeting machineries work together with the UPR to tune the ER's protein folding load.
机译:内质网(ER)的蛋白质折叠能力受信号通路网络(即未折叠的蛋白质应答(UPR))严格调节。 UPR传感器监视ER折叠状态以根据需要调整ER折叠容量。为了了解UPR传感器IRE1如何维持ER稳态,我们在体内以单核苷酸精度鉴定了RNA与IRE1的零长度交联。我们发现IRE1专门交联到ER靶向的mRNA,SRP RNA,核糖体和转移RNA的子集。交联位点聚集在核糖体表面从A位点到多肽出口通道的离散区域中。此外,IRE1以高亲和力与纯化的80S核糖体结合,表明与结合ER的核糖体相关。我们的研究结果表明,ER蛋白的转运和靶向机制与UPR一起可调节ER的蛋白折叠量。

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