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IST1 调节特定的回收途径。

IST1 regulates select recycling pathways.

机构信息

Department of Cell Biology and Physiology, Washington University in St. Louis, St. Louis, Missouri, USA.

Department of Biological Chemistry, University of Michigan Medical School, Ann Arbor, Michigan, USA.

出版信息

Traffic. 2024 Jan;25(1):e12921. doi: 10.1111/tra.12921. Epub 2023 Nov 5.

Abstract

ESCRTs (Endosomal Sorting Complex Required for Transports) are a modular set of protein complexes with membrane remodeling activities that include the formation and release of intraluminal vesicles (ILVs) to generate multivesicular endosomes. While most of the 12 ESCRT-III proteins are known to play roles in ILV formation, IST1 has been associated with a wider range of endosomal remodeling events. Here, we extend previous studies of IST1 function in endosomal trafficking and confirm that IST1, along with its binding partner CHMP1B, contributes to scission of early endosomal carriers. Functionally, depleting IST1 impaired delivery of transferrin receptor from early/sorting endosomes to the endocytic recycling compartment and instead increased its rapid recycling to the plasma membrane via peripheral endosomes enriched in the clathrin adaptor AP-1. IST1 is also important for export of mannose 6-phosphate receptor from early/sorting endosomes. Examination of IST1 binding partners on endosomes revealed that IST1 interacts with the MIT domain-containing sorting nexin SNX15, a protein previously reported to regulate endosomal recycling. Our kinetic and spatial analyses establish that SNX15 and IST1 occupy a clathrin-containing subdomain on the endosomal perimeter distinct from those previously implicated in cargo retrieval or degradation. Using live-cell microscopy, we see that SNX15 and CHMP1B alternately recruit IST1 to this subdomain or the base of endosomal tubules. These findings indicate that IST1 contributes to a subset of recycling pathways from the early/sorting endosome.

摘要

ESCRTs(内体分选复合物必需的运输)是一组具有膜重塑活性的模块化蛋白复合物,包括形成和释放腔内小泡(ILVs)以产生多泡内体。虽然大多数 12 种 ESCRT-III 蛋白已知在 ILV 形成中发挥作用,但 IST1 与更广泛的内体重塑事件有关。在这里,我们扩展了以前关于 IST1 在内体运输中的功能研究,并证实 IST1 与其结合伴侣 CHMP1B 有助于早期内体载体的分裂。在功能上,耗尽 IST1 会损害转铁蛋白受体从早期/分拣内体到内体再循环 compartment 的传递,而是通过富含网格蛋白衔接蛋白 AP-1 的周边内体使其快速再循环到质膜。IST1 对于甘露糖 6-磷酸受体从早期/分拣内体的输出也很重要。对内体上的 IST1 结合蛋白的检查表明,IST1 与含有 MIT 结构域的分选连接蛋白 SNX15 相互作用,SNX15 是一种先前被报道调节内体再循环的蛋白。我们的动力学和空间分析确立了 SNX15 和 IST1 占据了内体周界上的一个含有网格蛋白的亚域,与以前涉及货物回收或降解的亚域不同。使用活细胞显微镜,我们看到 SNX15 和 CHMP1B 交替地将 IST1 招募到这个亚域或内体小管的底部。这些发现表明 IST1 有助于从早期/分拣内体的一部分再循环途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f400/11027954/d52b80edb571/nihms-1938176-f0001.jpg

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Proc Natl Acad Sci U S A. 2022 Jul 19;119(29):e2204536119. doi: 10.1073/pnas.2204536119. Epub 2022 Jul 11.
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An ESCRT-III Polymerization Sequence Drives Membrane Deformation and Fission.ESCRT-III 多聚化序列驱动膜的形变和分裂。
Cell. 2020 Sep 3;182(5):1140-1155.e18. doi: 10.1016/j.cell.2020.07.021. Epub 2020 Aug 18.
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Membrane constriction and thinning by sequential ESCRT-III polymerization.通过连续的 ESCRT-III 聚合导致的膜收缩和变薄。
Nat Struct Mol Biol. 2020 Apr;27(4):392-399. doi: 10.1038/s41594-020-0404-x. Epub 2020 Apr 6.
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The many functions of ESCRTs.ESCRTs 的多种功能。
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