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首页> 外文期刊>Molecular biology of the cell >An Essential Role for SNX1 in Lysosomal Sorting of Protease-activated Receptor-1: Evidence for Retromer-, Hrs-, and Tsg101-independent Functions of Sorting Nexins
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An Essential Role for SNX1 in Lysosomal Sorting of Protease-activated Receptor-1: Evidence for Retromer-, Hrs-, and Tsg101-independent Functions of Sorting Nexins

机译:SNX1在蛋白酶激活的受体1的溶酶体分选中的基本作用:排序神经毒素的逆转录,Hrs和Tsg101独立功能的证据。

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摘要

Sorting nexin 1 (SNX1) and SNX2 are the mammalian homologues of the yeast Vps5p retromer component that functions in endosome-to-Golgi trafficking. SNX1 is also implicated in endosome-to-lysosome sorting of cell surface receptors, although its requirement in this process remains to be determined. To assess SNX1 function in endocytic sorting of protease-activated receptor-1 (PAR1), we used siRNA to deplete HeLa cells of endogenous SNX1 protein. PAR1, a G-protein-coupled receptor, is proteolytically activated by thrombin, internalized, sorted predominantly to lysosomes, and efficiently degraded. Strikingly, depletion of endogenous SNX1 by siRNA markedly inhibited agonist-induced PAR1 degradation, whereas expression of a SNX1 siRNA-resistant mutant protein restored agonist-promoted PAR1 degradation in cells lacking endogenous SNX1, indicating that SNX1 is necessary for lysosomal degradation of PAR1. SNX1 is known to interact with components of the mammalian retromer complex and Hrs, an early endosomal membrane-associated protein. However, activated PAR1 degradation was not affected in cells depleted of retromer Vps26/Vps35 subunits, Hrs or Tsg101, an Hrs-interacting protein. We further show that SNX2, which dimerizes with SNX1, is not essential for lysosomal sorting of PAR1, but rather can regulate PAR1 degradation by disrupting endosomal localization of endogenous SNX1 when ectopically expressed. Together, our findings establish an essential role for endogenous SNX1 in sorting activated PAR1 to a distinct lysosomal degradative pathway that is independent of retromer, Hrs, and Tsg101.
机译:排序nexin 1(SNX1)和SNX2是酵母Vps5p反向异构体组分的哺乳动物同源物,其在从内体到高尔基体的运输中起作用。尽管在该过程中对SNX1的要求尚待确定,但SNX1也涉及细胞表面受体的内体至溶酶体分选。为了评估SNX1在蛋白酶激活受体1(PAR1)的内吞分选中的功能,我们使用siRNA消耗了内源性SNX1蛋白的HeLa细胞。 PAR1是一种G蛋白偶联受体,被凝血酶蛋白水解激活,内在化,主要分类为溶酶体,并有效降解。令人惊讶的是,siRNA耗尽内源性SNX1明显抑制了激动剂诱导的PAR1降解,而SNX1 siRNA抗性突变蛋白的表达在缺乏内源性SNX1的细胞中恢复了激动剂促进的PAR1降解,表明SNX1对于PAR1的溶酶体降解是必需的。已知SNX1与哺乳动物逆转录复合物和Hrs(一种早期的内体膜相关蛋白)的成分相互作用。但是,激活的PAR1降解在缺乏后代Vps26 / Vps35亚基,Hrs或与Hrs相互作用的蛋白Tsg101的细胞中不受影响。我们进一步表明,与SNX1二聚化的SNX2对PAR1的溶酶体分选不是必需的,而是可以通过异位表达时破坏内源性SNX1的内体定位来调节PAR1降解。在一起,我们的发现建立了内源性SNX1在将活化的PAR1排序到独立于溶酶体,Hrs和Tsg101的独特的溶酶体降解途径中的重要作用。

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