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Reggies/flotillins interact with Rab11a and SNX4 at the tubulovesicular recycling compartment and function in transferrin receptor and E-cadherin trafficking.

机译:Reggie / flotillins在小管小体回收区与Rab11a和SNX4相互作用,并在运铁蛋白受体和E-钙粘蛋白运输中起作用。

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摘要

The lipid raft proteins reggie-1 and -2 (flotillins) are implicated in membrane protein trafficking but exactly how has been elusive. We find that reggie-1 and -2 associate with the Rab11a, SNX4, and EHD1-decorated tubulovesicular recycling compartment in HeLa cells and that reggie-1 directly interacts with Rab11a and SNX4. Short hairpin RNA-mediated down-regulation of reggie-1 (and -2) in HeLa cells reduces association of Rab11a with tubular structures and impairs recycling of the transferrin-transferrin receptor (TfR) complex to the plasma membrane. Overexpression of constitutively active Rab11a rescues TfR recycling in reggie-deficient HeLa cells. Similarly, in a Ca(2+) switch assay in reggie-depleted A431 cells, internalized E-cadherin is not efficiently recycled to the plasma membrane upon Ca(2+) repletion. E-cadherin recycling is rescued, however, by overexpression of constitutively active Rab11a or SNX4 in reggie-deficient A431 cells. This suggests that the function of reggie-1 in sorting and recycling occurs in association with Rab11a and SNX4. Of interest, impaired recycling in reggie-deficient cells leads to de novo E-cadherin biosynthesis and cell contact reformation, showing that cells have ways to compensate the loss of reggies. Together our results identify reggie-1 as a regulator of the Rab11a/SNX4-controlled sorting and recycling pathway, which is, like reggies, evolutionarily conserved.
机译:脂筏蛋白reggie-1和-2(氟色林)与膜蛋白运输有关,但确切地讲是难以捉摸的。我们发现reggie-1和-2与HeLa细胞中的Rab11a,SNX4和EHD1装饰的微管网状回收室相关联,并且reggie-1与Rab11a和SNX4直接相互作用。短发夹RNA介导的HeLa细胞中reggie-1(和-2)的下调减少了Rab11a与管状结构的缔合,并削弱了转铁蛋白-转铁蛋白受体(TfR)复合物向质膜的循环利用。组成型活性Rab11a的过度表达可拯救缺乏RegLa的HeLa细胞中的TfR循环。类似地,在贫乏食物的A431细胞中进行Ca(2+)转换分析时,Ca(2+)补充后,内在化的E-钙粘着蛋白无法有效地循环到质膜。然而,通过在有缺陷的A431细胞中过度表达组成型活性Rab11a或SNX4,可以挽救E-钙粘蛋白的再循环。这表明reggie-1在分类和回收中的功能与Rab11a和SNX4结合在一起发生。令人感兴趣的是,缺乏免疫缺陷的细胞中的再循环受损导致从头开始E-钙粘蛋白的生物合成和细胞接触再形成,这表明细胞具有补偿猪损失的方法。我们的研究结果共同确定了reggie-1是Rab11a / SNX4控制的分选和回收途径的调节剂,就像养猪一样,在进化上也是保守的。

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