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The phosphorylation of sorting nexin 5 at serine 226 regulates retrograde transport and macropinocytosis

机译:丝氨酸226上分选nexin 5的磷酸化调节逆行转运和巨胞饮作用

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摘要

Sorting nexin 5 (SNX5), a member of sorting nexin family, plays an important role in membrane trafficking, including the retrograde trafficking of the cation independent mannose 6-phosphate receptor (CI-M6PR) and macropinocytosis. Using ESI-LCMS/MS analysis, we confirmed that SNX5 serine 226 is phosphorylated. Since SNX5 forms heterodimers with SNX1 or SNX2, we examined the effect of phosphorylation at S226 on the heterodimer formations. Wild-type and mutants of SNX5, in which S226 was mutated to a glutamic acid or an alanine, were expressed in 8505C cells. In pull-down assays using SNX5 as bait, only the S226E mutant failed to precipitate both SNX1 and SNX2. Confocal microscopy data indicated that the wild type and S226A mutant were colocalized with SNX1 and SNX2 in endosomes, but the S226E was not. SNX5 and SNX6 support each other's functions and are involved with CI-M6PR retrograde trafficking. In SNX5 and SNX6 double knockdown cells, CI-M6PR was dispersed and colocalized with the endosomal marker EEA1. In a rescue experiment using SNX5 mutants, the S226A rescued CI-M6PR localization, similar to control cells, but S226E did not. Furthermore, the decrease in the uptake of dextran by macropinocytosis in SNX5 knockdown cells was recovered by the expression of rescue-wild type or S226A mutant, but not by the rescue-S226E mutant. These observations indicate that SNX5 constitutive phosphorylation that mimics the mutant S226E decreases the active SNX5 in these cells. The phosphorylation of SNX5 regulates the dimerization with SNX1 or SNX2, and this suggests that it controls membrane trafficking and protein sorting.
机译:分选nexin 5(SNX5)是分选nexin家族的成员,在膜运输中起着重要作用,包括阳离子独立的甘露糖6-磷酸受体(CI-M6PR)的逆行运输和大胞饮作用。使用ESI-LCMS / MS分析,我们确认SNX5丝氨酸226被磷酸化。由于SNX5与SNX1或SNX2形成异二聚体,因此我们研究了S226磷酸化对异二聚体形成的影响。 SNX5的野生型和突变体在8505C细胞中表达,其中S226突变为谷氨酸或丙氨酸。在使用SNX5作为诱饵的下拉测定中,只有S226E突变体无法沉淀SNX1和SNX2。共聚焦显微镜数据表明,野生型和S226A突变体与SNX1和SNX2在核内体中共定位,而S226E没有。 SNX5和SNX6相互支持,并参与CI-M6PR逆向交易。在SNX5和SNX6双敲低细胞中,CI-M6PR被分散并与内体标记EEA1共定位。在使用SNX5突变体进行的抢救实验中,S226A抢救了CI-M6PR定位,类似于对照细胞,但S226E却没有。此外,通过拯救野生型或S226A突变体的表达恢复了SNX5敲低细胞中巨胞吞作用对右旋糖酐摄取的降低,但不是由拯救-S226E突变体表达。这些观察结果表明,模拟突变体S226E的SNX5组成型磷酸化降低了这些细胞中的活性SNX5。 SNX5的磷酸化调节SNX1或SNX2的二聚化,这表明它控制着膜运输和蛋白质分选。

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