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肌动蛋白稳定的内体微域对循环蛋白进行序列依赖的分拣。

Sequence-dependent sorting of recycling proteins by actin-stabilized endosomal microdomains.

机构信息

Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, PA, USA.

出版信息

Cell. 2010 Nov 24;143(5):761-73. doi: 10.1016/j.cell.2010.10.003.

Abstract

The functional consequences of signaling receptor endocytosis are determined by the endosomal sorting of receptors between degradation and recycling pathways. How receptors recycle efficiently, in a sequence-dependent manner that is distinct from bulk membrane recycling, is not known. Here, in live cells, we visualize the sorting of a prototypical sequence-dependent recycling receptor, the beta-2 adrenergic receptor, from bulk recycling proteins and the degrading delta-opioid receptor. Our results reveal a remarkable diversity in recycling routes at the level of individual endosomes, and indicate that sequence-dependent recycling is an active process mediated by distinct endosomal subdomains distinct from those mediating bulk recycling. We identify a specialized subset of tubular microdomains on endosomes, stabilized by a highly localized but dynamic actin machinery, that mediate this sorting, and provide evidence that these actin-stabilized domains provide the physical basis for a two-step kinetic and affinity-based model for protein sorting into the sequence-dependent recycling pathway.

摘要

信号受体内化的功能后果取决于受体在内体中在降解和回收途径之间的分拣。目前尚不清楚受体如何以依赖于序列的方式有效地进行回收,这种方式与批量膜回收不同。在这里,在活细胞中,我们可视化了从批量回收蛋白和降解的 delta 阿片受体中分拣出典型的依赖于序列的回收受体β-2 肾上腺素受体。我们的结果揭示了单个内体水平上回收途径的显著多样性,并表明序列依赖性回收是一种由不同的内体亚区介导的主动过程,这些亚区与介导批量回收的亚区不同。我们鉴定出了内体上管状微区的一个专门子集,这些微区由高度局部但动态的肌动蛋白机制稳定,介导这种分拣,并提供证据表明这些肌动蛋白稳定的结构域为将蛋白质分拣到依赖于序列的回收途径的两步动力学和基于亲和力的模型提供了物理基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6d9/3058345/1b73287acfc5/nihms244039f1.jpg

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