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A Role for Sorting Nexin 2 in Epidermal Growth Factor Receptor Down-regulation: Evidence for Distinct Functions of Sorting Nexin 1 and 2 in Protein Trafficking

机译:排序Nexin 2在表皮生长因子受体下调中的作用:排序Nexin 1和2在蛋白质贩运中的不同功能的证据。

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Sorting nexin 1 (SNX1) and SNX2, homologues of the yeast vacuolar protein-sorting (Vps)5p, contain a phospholipid-binding motif termed the phox homology (PX) domain and a carboxyl terminal coiled-coil region. A role for SNX1 in trafficking of cell surface receptors from endosomes to lysosomes has been proposed; however, the function of SNX2 remains unknown. Toward understanding the function of SNX2, we first examined the distribution of endogenous protein in HeLa cells. We show that SNX2 resides primarily in early endosomes, whereas SNX1 is found partially in early endosomes and in tubulovesicular-like structures distributed throughout the cytoplasm. We also demonstrate that SNX1 interacts with the mammalian retromer complex through its amino terminal domain, whereas SNX2 does not. Moreover, activated endogenous epidermal growth factor receptor (EGFR) colocalizes markedly with SNX2-positive endosomes, but minimally with SNX1-containing vesicles. To assess SNX2 function, we examined the effect of a PX domain-mutated SNX2 that is defective in vesicle localization on EGFR trafficking. Mutant SNX2 markedly inhibited agonist-induced EGFR degradation, whereas internalization remained intact. In contrast, SNX1 PX domain mutants failed to effect EGFR degradation, whereas a SNX1 deletion mutant significantly inhibited receptor down-regulation. Interestingly, knockdown of SNX1 and SNX2 expression by RNA interference failed to alter agonist-induced EGFR down-regulation. Together, these findings suggest that both SNX1 and SNX2 are involved in regulating lysosomal sorting of internalized EGFR, but neither protein is essential for this process. These studies are the first to demonstrate a function for SNX2 in protein trafficking.
机译:酵母液泡蛋白分选(Vps)5p的同系物nexin 1(SNX1)和SNX2的分选包含称为phox同源性(PX)域和羧基末端卷曲螺旋区的磷脂结合基序。已经提出了SNX1在将细胞表面受体从内体运输到溶酶体中的作用。但是,SNX2的功能仍然未知。为了了解SNX2的功能,我们首先检查了HeLa细胞中内源性蛋白质的分布。我们显示,SNX2主要驻留在早期的内体中,而SNX1被发现部分存在于早期的内体中以及分布在整个细胞质中的肾小管样结构。我们还证明了SNX1通过其氨基末端结构域与哺乳动物的复古异构体相互作用,而SNX2没有。此外,激活的内源性表皮生长因子受体(EGFR)与SNX2阳性内体显着共定位,但与含SNX1的囊泡共定位最小。为了评估SNX2的功能,我们检查了PX域突变的SNX2(在囊泡定位中存在缺陷)对EGFR转运的影响。突变SNX2显着抑制激动剂诱导的EGFR降解,而内在化保持完整。相比之下,SNX1 PX域突变体不能影响EGFR降解,而SNX1缺失突变体则显着抑制受体下调。有趣的是,RNA干扰敲低SNX1和SNX2的表达未能改变激动剂诱导的EGFR下调。在一起,这些发现表明SNX1和SNX2都参与调节内部化的EGFR的溶酶体分选,但是这两种蛋白都不是该过程所必需的。这些研究首次证明了SNX2在蛋白质运输中的功能。

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