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A dual task for the Xbp1-responsive OS-9 variants in the mammalian endoplasmic reticulum: inhibiting secretion of misfolded protein conformers and enhancing their disposal

机译:哺乳动物内质网中Xbp1反应性OS-9变体的双重任务:抑制错误折叠的蛋白质构象异构体的分泌并增强其处置能力

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摘要

Normally, non-native polypeptides are not transported through the secretory pathway. Rather, they are translocated from the endoplasmic reticulum (ER) lumen into the cytosol where they are degraded by proteasomes. Here we characterize the function in ER quality control of two proteins derived from alternative splicing of the OS-9 gene. OS-9.1 and OS-9.2 are ubiquitously expressed in human tissues and are amplified in tumors. They are transcriptionally induced upon activation of the Ire1/Xbp1 ER-stress pathway. OS-9 variants do not associate with folding-competent proteins. Rather, they selectively bind folding-defective ones thereby inhibiting transport of non-native conformers through the secretory pathway. The intralumenal level of OS-9.1 and OS-9.2 inversely correlates with the fraction of a folding-defective glycoprotein, the Null(hong kong) (NHK) variant of alpha1-antitrypsin that escapes retention-based ER quality control. OS-9 up-regulation does not affect NHK disposal, but reduction of the intralumenal level of OS-9.1 and OS-9.2 substantially delays disposal of this model substrate. OS-9.1 and OS-9.2 also associate transiently with non-glycosylated folding-defective proteins, but association is unproductive. Finally, OS-9 activity does not require an intact mannose 6-P homology domain. Thus, OS-9.1 and OS-9.2 play a dual role in mammalian ER quality control: first as crucial retention factors for misfolded conformers, and second as promoters of protein disposal from the ER lumen.
机译:通常,非天然多肽不通过分泌途径转运。相反,它们从内质网(ER)内腔转移到胞质溶胶中,在那里它们被蛋白酶体降解。在这里,我们表征了OS-9基因的可变剪接衍生的两种蛋白质在ER质量控制中的功能。 OS-9.1和OS-9.2在人体组织中普遍表达,并在肿瘤中扩增。它们在激活Ire1 / Xbp1 ER应激途径后被转录诱导。 OS-9变体不与可折叠蛋白结合。相反,它们选择性地结合折叠缺陷的那些,从而抑制非天然构象异构体通过分泌途径的运输。 OS-9.1和OS-9.2的腔内水平与折叠缺陷型糖蛋白(α1-抗胰蛋白酶的Null(香港)(NHK)变体)的分数成反比,该变体逃避了基于保留的ER质量控制。 OS-9的上调不会影响NHK的处置,但是OS-9.1和OS-9.2的腔内水平降低会大大延迟该模型基质的处置。 OS-9.1和OS-9.2也可与非糖基化的折叠缺陷蛋白瞬时缔合,但缔合没有作用。最后,OS-9活性不需要完整的甘露糖6-P同源域。因此,OS-9.1和OS-9.2在哺乳动物ER质量控制中起着双重作用:首先是错误折叠构象异构体的关键保留因子,其次是从ER内腔处理蛋白质的促进剂。

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