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囊泡相关微管结合蛋白ARL6(BBS3)在布氏锥虫鞭毛延长中的作用。

A role for the vesicle-associated tubulin binding protein ARL6 (BBS3) in flagellum extension in Trypanosoma brucei.

作者信息

Price Helen P, Hodgkinson Michael R, Wright Megan H, Tate Edward W, Smith Barbara A, Carrington Mark, Stark Meg, Smith Deborah F

机构信息

Centre for Immunology and Infection, Department of Biology, University of York, Heslington, York YO10 5YW, UK.

出版信息

Biochim Biophys Acta. 2012 Jul;1823(7):1178-91. doi: 10.1016/j.bbamcr.2012.05.007. Epub 2012 May 15.

Abstract

The small GTPase Arl6 is implicated in the ciliopathic human genetic disorder Bardet-Biedl syndrome, acting at primary cilia in recruitment of the octomeric BBSome complex, which is required for specific trafficking events to and from the cilium in eukaryotes. Here we describe functional characterisation of Arl6 in the flagellated model eukaryote Trypanosoma brucei, which requires motility for viability. Unlike human Arl6 which has a ciliary localisation, TbARL6 is associated with electron-dense vesicles throughout the cell body following co-translational modification by N-myristoylation. Similar to the related protein ARL-3A in T. brucei, modulation of expression of ARL6 by RNA interference does not prevent motility but causes a significant reduction in flagellum length. Tubulin is identified as an ARL6 interacting partner, suggesting that ARL6 may act as an anchor between vesicles and cytoplasmic microtubules. We provide evidence that the interaction between ARL6 and the BBSome is conserved in unicellular eukaryotes. Overexpression of BBS1 leads to translocation of endogenous ARL6 to the site of exogenous BBS1 at the flagellar pocket. Furthermore, a combination of BBS1 overexpression and ARL6 RNAi has a synergistic inhibitory effect on cell growth. Our findings indicate that ARL6 in trypanosomes contributes to flagellum biogenesis, most likely through an interaction with the BBSome.

摘要

小GTP酶Arl6与纤毛病相关的人类遗传疾病巴德-比德尔综合征有关,它在初级纤毛中发挥作用,招募八聚体BBSome复合体,这是真核生物中纤毛特异性物质运输所必需的。在此,我们描述了有鞭毛的模式真核生物布氏锥虫中Arl6的功能特性,布氏锥虫需要运动能力来维持生存。与具有纤毛定位的人类Arl6不同,经N-肉豆蔻酰化共翻译修饰后,TbARL6在整个细胞体中与电子致密囊泡相关。与布氏锥虫中相关蛋白ARL-3A类似,通过RNA干扰调节Arl6的表达并不妨碍运动,但会导致鞭毛长度显著缩短。微管蛋白被鉴定为Arl6的相互作用伴侣,这表明Arl6可能作为囊泡与细胞质微管之间的锚定物。我们提供的证据表明,在单细胞真核生物中,Arl6与BBSome之间的相互作用是保守的。BBS1的过表达导致内源性Arl6转移到鞭毛袋中外源性BBS1的位置。此外,BBS1过表达和Arl6 RNA干扰的组合对细胞生长具有协同抑制作用。我们的研究结果表明,锥虫中的Arl6最有可能通过与BBSome相互作用,促进鞭毛的生物发生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba62/3793860/515b0f23881d/fx1.jpg

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