兔小管内体形成所需gtpase激活蛋白的鉴定。

IF 3.6 3区 生物学 Q3 CELL BIOLOGY
Traffic Pub Date : 2025-04-01 DOI:10.1111/tra.70007
Shumpei Nakashima, Mitsunori Fukuda
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引用次数: 0

摘要

在某些类型的细胞中,不依赖网格蛋白的内吞货物蛋白通过专门的管状核内体(管状核内体)再循环回到质膜。包括rabb小gtpase在内的几种调节因子,先前已报道控制管状核内体结构,其中一种调节因子Rab22A控制货物分选和小管伸长。由于Rab活性通常由鸟嘌呤核苷酸交换因子(GEF)和gtpase激活蛋白(GAP)控制,这些上游调节因子也可能参与管状内体的形成。然而,尽管我们之前报道过Vps9d1是控制管状内体形成的Rab22A-GEF,但没有报道过管状内体形成所需的Rab22A-GEF。在这里,我们通过对TBC/ lab - gap的综合筛选证明,TBC1D10B、TBC1D18、TBC1D22B和EVI5四种lab - gap以gap活性依赖的方式参与HeLa细胞管状内体的形成。这些rab - gap的敲低或过表达导致相同的表型,即管状核内体结构减少。由于这四种Rab22A- gap中的一种,TBC1D10B能够减少Rab22A活性的数量和Rab22A阳性早期内体的大小,因此它是Rab22A- gap最有可能的候选者。我们的研究结果表明,适当的GTPase周期对于控制管状内体的形成是重要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification of Rab GTPase-Activating Proteins Required for Tubular Endosome Formation.

In certain kinds of cells, clathrin-independently endocytosed cargo proteins are recycled back to the plasma membrane via specialized tubular-shaped endosomes, so-called tubular endosomes. Several regulators, including Rab small GTPases, have previously been reported to control tubular endosome structures, and one of the regulators, Rab22A, controls cargo sorting and tubule elongation. Since Rab activity is generally controlled by a guanine nucleotide exchange factor (GEF) and a GTPase-activating protein (GAP), these upstream regulators would also be involved in tubular endosome formation. However, although we have previously reported that Vps9d1 is a Rab22A-GEF that controls tubular endosome formation, there have been no reports of Rab-GAPs that are required for tubular endosome formation. Here, we demonstrated by comprehensive screening of TBC/Rab-GAPs that four Rab-GAPs, TBC1D10B, TBC1D18, TBC1D22B and EVI5, are involved in tubular endosome formation in HeLa cells in a GAP-activity-dependent manner. Knockdown or overexpression of each of these Rab-GAPs resulted in the same phenotype, that is, reduced tubular endosome structures. Since one of these four Rab-GAPs, TBC1D10B, was able to reduce the amount of active Rab22A and the size of Rab22A-positive early endosomes, it is the most probable candidate for a Rab22A-GAP. Our findings suggest that a proper GTPase cycle is important for the control of tubular endosome formation.

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来源期刊
Traffic
Traffic 生物-细胞生物学
CiteScore
8.10
自引率
2.20%
发文量
50
审稿时长
2 months
期刊介绍: Traffic encourages and facilitates the publication of papers in any field relating to intracellular transport in health and disease. Traffic papers span disciplines such as developmental biology, neuroscience, innate and adaptive immunity, epithelial cell biology, intracellular pathogens and host-pathogen interactions, among others using any eukaryotic model system. Areas of particular interest include protein, nucleic acid and lipid traffic, molecular motors, intracellular pathogens, intracellular proteolysis, nuclear import and export, cytokinesis and the cell cycle, the interface between signaling and trafficking or localization, protein translocation, the cell biology of adaptive an innate immunity, organelle biogenesis, metabolism, cell polarity and organization, and organelle movement. All aspects of the structural, molecular biology, biochemistry, genetics, morphology, intracellular signaling and relationship to hereditary or infectious diseases will be covered. Manuscripts must provide a clear conceptual or mechanistic advance. The editors will reject papers that require major changes, including addition of significant experimental data or other significant revision. Traffic will consider manuscripts of any length, but encourages authors to limit their papers to 16 typeset pages or less.
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