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Rab41 是高尔基体组织的一种新型调节因子,对于内质网到高尔基体的物质运输和细胞生长是必需的。

Rab41 is a novel regulator of Golgi apparatus organization that is needed for ER-to-Golgi trafficking and cell growth.

机构信息

Department of Physiology and Biophysics, University of Arkansas for Medical Sciences, Little Rock, Arkansas, United States of America.

出版信息

PLoS One. 2013 Aug 6;8(8):e71886. doi: 10.1371/journal.pone.0071886. Print 2013.

Abstract

BACKGROUND

The 60(+) members of the mammalian Rab protein family group into subfamilies postulated to share common functionality. The Rab VI subfamily contains 5 Rab proteins, Rab6a/a', Rab6b, Rab6c and Rab41. High-level knockdown of Rab6a/a' has little effect on the tightly organized Golgi ribbon in HeLa cells as seen by fluorescence microscopy. In striking contrast, we found Rab41 was strongly required for normal Golgi ribbon organization.

METHODS/RESULTS: Treatment of HeLa cells with Rab41 siRNAs scattered the Golgi ribbon into clustered, punctate Golgi elements. Overexpression of GDP-locked Rab41, but not wild type or GTP-locked Rab41, produced a similar Golgi phenotype. By electron microscopy, Rab41 depletion produced short, isolated Golgi stacks. Golgi-associated vesicles accumulated. At low expression levels, wild type and GTP-locked Rab41 showed little concentration in the Golgi region, but puncta were observed and most were in ruffled regions at the cell periphery. There was 25% co-localization of GTP-locked Rab41 with the ER marker, Sec61p. GDP-locked Rab41, as expected, displayed an entirely diffuse cytoplasmic distribution. Depletion of Rab41 or overexpression of GDP-locked Rab41 partially inhibited ER-to-Golgi transport of VSV-G protein. However, Rab41 knockdown had little, if any, effect on endosome-to-Golgi transport of SLTB. Additionally, after a 2-day delay, treatment with Rab41 siRNA inhibited cell growth, while overexpression of GDP-locked Rab41, but not wild type or GTP-locked Rab41, produced a rapid, progressive cell loss. In double knockdown experiments with Rab6, the Golgi ribbon was fragmented, a result consistent with Rab41 and Rab6 acting in parallel.

CONCLUSION

We provide the first evidence for distinctive Rab41 effects on Golgi organization, ER-to-Golgi trafficking and cell growth. When combined with the evidence that Rab6a/a' and Rab6b have diverse roles in Golgi function, while Rab6c regulates mitotic function, our data indicate that Rab VI subfamily members, although related by homology and structure, share limited functional conservation.

摘要

背景

哺乳动物 Rab 蛋白家族的 60 多个成员分为亚家族,推测具有共同的功能。Rab VI 亚家族包含 5 个 Rab 蛋白,即 Rab6a/a'、Rab6b、Rab6c 和 Rab41。通过荧光显微镜观察,高水平敲低 Rab6a/a'对 HeLa 细胞中紧密排列的高尔基体带几乎没有影响。相比之下,我们发现 Rab41 对于正常的高尔基体带组织非常重要。

方法/结果:用 Rab41 siRNA 处理 HeLa 细胞,将高尔基体带散布成簇状点状高尔基体元件。过表达 GDP 锁定的 Rab41,但不是野生型或 GTP 锁定的 Rab41,产生了类似的高尔基体表型。通过电子显微镜,Rab41 耗竭导致短的、孤立的高尔基体堆栈。高尔基体相关囊泡积累。在低表达水平下,野生型和 GTP 锁定的 Rab41 在高尔基体区域的浓度很小,但观察到点状,并且大多数位于细胞边缘的皱襞区域。GTP 锁定的 Rab41 与 ER 标记物 Sec61p 有 25%的共定位。如预期的那样,GDP 锁定的 Rab41 显示出完全弥散的细胞质分布。Rab41 耗竭或过表达 GDP 锁定的 Rab41 部分抑制了 VSV-G 蛋白的 ER 到高尔基体的运输。然而,Rab41 敲低对 SLTB 的内体到高尔基体的运输几乎没有影响。此外,在用 Rab41 siRNA 处理两天后,抑制了细胞生长,而过表达 GDP 锁定的 Rab41,但不是野生型或 GTP 锁定的 Rab41,导致快速、渐进的细胞丢失。在 Rab6 的双敲低实验中,高尔基体带被碎片化,这一结果与 Rab41 和 Rab6 平行作用一致。

结论

我们首次提供了 Rab41 对高尔基体组织、ER 到高尔基体运输和细胞生长的独特作用的证据。当与 Rab6a/a'和 Rab6b 在高尔基体功能中具有不同作用以及 Rab6c 调节有丝分裂功能的证据相结合时,我们的数据表明 Rab VI 亚家族成员尽管具有同源性和结构上的相关性,但功能保守性有限。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2420/3735572/9bba331f84b6/pone.0071886.g001.jpg

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