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Proteasomal degradation of preemptive quality control (pQC) substrates is mediated by an AIRAPL–p97 complex

机译:抢先质量控制(pQC)底物的蛋白酶体降解是由AIRAPL–p97复合物介导的

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The initial folding of secreted proteins occurs in the ER lumen, which contains specific chaperones and where posttranslational modifications may occur. Therefore lack of translocation, regardless of entry route or protein identity, is a highly toxic event, as the newly synthesized polypeptide is misfolded and can promiscuously interact with cytosolic factors. Mislocalized proteins bearing a signal sequence that did not successfully translocate through the translocon complex are subjected to a preemptive quality control (pQC) pathway and are degraded by the ubiquitin-proteasome system (UPS). In contrast to UPS-mediated, ER-associated degradation, few components involved in pQC have been identified. Here we demonstrate that on specific translocation inhibition, a p97–AIRAPL complex directly binds and regulates the efficient processing of polyubiquitinated pQC substrates by the UPS. We also demonstrate p97’s role in pQC processing of preproinsulin in cases of naturally occurring mutations within the signal sequence of insulin.
机译:分泌蛋白的初始折叠发生在ER内腔中,该内腔含有特定的分子伴侣并且可能发生翻译后修饰。因此,无论进入途径或蛋白质身份如何,缺乏易位都是高毒性事件,因为新合成的多肽被错误折叠并可能与胞质因子混杂相互作用。带有未成功转运通过转运子复合物的信号序列的错误定位的蛋白质会经历先发质量控制(pQC)途径,并被泛素-蛋白酶体系统(UPS)降解。与UPS介导的,与ER相关的降解相反,几乎没有发现pQC涉及的组件。在这里,我们证明了对特定易位抑制的作用,p97-AIRAPL复合物直接结合并调节UPS对多泛素化pQC底物的有效处理。在胰岛素信号序列内自然发生突变的情况下,我们还证明了p97在前胰岛素原的pQC处理中的作用。

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