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Endosomal 'sort' of signaling control: The role of ESCRT machinery in regulation of receptor-mediated signaling pathways

机译:信号控制的内体“排序”:Escrt机械在受体介导的信号通路调节中的作用

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The endosomal sorting complexes required for transport (ESCRTs) machinery consists of four protein assemblies (ESCRT-0 to -III subcomplexes) which mediate various processes of membrane remodeling in the cell. In the endocytic pathway, ESCRTs sort cargo destined for degradation into intraluminal vesicles (ILVs) of endosomes. Cargos targeted by ESCRTs include various signaling molecules, mainly internalized cell-surface receptors but also some cytosolic proteins. It is therefore expected that aberrant trafficking caused by ESCRT dysfunction affects different signaling pathways. Here we review how perturbation of ESCRT activity alters intracellular transport of membrane receptors, causing their accumulation on endocytic compartments, decreased degradation and/or altered recycling to the plasma membrane. We further describe how perturbed trafficking of receptors impacts the activity of their downstream signaling pathways, with or without changes in transcriptional responses. Finally, we present evidence that ESCRT components can also control activity and intracellular distribution of cytosolic signaling proteins (kinases, other effectors and soluble receptors). The underlying mechanisms involve sequestration of such proteins in ILVs, their sorting for degradation or towards non-lysosomal destinations, and regulating their availability in various cellular compartments. All these ESCRT-mediated processes can modulate final outputs of multiple signaling pathways. (c) 2017 Elsevier Ltd. All rights reserved.
机译:运输(ESCRTS)机械所需的内体分选复合物由四种蛋白质组件(ESCRT-0至-III分段)组成,其介导细胞中的各种膜重塑过程的各种方法。在内吞的途径中,ESCRTS对注定的货物分配到骨髓内囊肿(ILV)中的降解。由ESCRTS靶向的尸体包括各种信号分子,主要是内化细胞表面受体,但也是一些细胞溶胶蛋白。因此,预期由Escrt功能障碍引起的异常贩运影响了不同的信号通路。在这里,我们审查了Escrt活性的扰动改变了细胞内传输的膜受体,导致它们对内吞室的积累,降低和/或改变与血浆膜的再循环。我们进一步描述了对受体的扰动贩运方式如何影响其下游信号通路的活动,有或没有转录反应的变化。最后,我们提出了证据表明Escrt组分还可以控制胞质信号传导蛋白的活性和细胞内分布(激酶,其他效果和可溶受体)。潜在机制涉及在ILV中螯合这种蛋白质,它们的分选用于降解或朝向非溶酶体目的地,并调节它们在各种细胞室中的可用性。所有这些ESCRT介导的过程都可以调制多个信令路径的最终输出。 (c)2017 Elsevier Ltd.保留所有权利。

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