首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Functional Interplay between the Small GTPase Rab11a and Mitochondria-shaping Proteins Regulates Mitochondrial Positioning and Polarization of the Actin Cytoskeleton Downstream of Src Family Kinases
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A Functional Interplay between the Small GTPase Rab11a and Mitochondria-shaping Proteins Regulates Mitochondrial Positioning and Polarization of the Actin Cytoskeleton Downstream of Src Family Kinases

机译:小GTPase Rab11a和线粒体塑造蛋白之间的功能相互作用调节线粒体的位置和Src家族激酶的肌动蛋白细胞骨架下游的极化。

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摘要

It is believed that mitochondrial dynamics is coordinated with endosomal traffic rates during cytoskeletal remodeling, but the mechanisms involved are largely unknown. The adenovirus early region 4 ORF4 protein (E4orf4) subverts signaling by Src family kinases (SFK) to perturb cellular morphology, membrane traffic, and organellar dynamics and to trigger cell death. Using E4orf4 as a model, we uncovered a functional connection between mitochondria-shaping proteins and the small GTPase Rab11a, a key regulator of polarized transport via recycling endosomes. We found that E4orf4 induced dramatic changes in the morphology of mitochondria along with their mobilization at the vicinity of a polarized actin network typifying E4orf4 action, in a manner controlled by SFK and Rab11a. Mitochondrial remodeling was associated with increased proximity between Rab11a and mitochondrial membranes, changes in fusion-fission dynamics, and mitochondrial relocalization of the fission factor dynamin-related protein 1 (Drp1), which was regulated by the Rab11a effector protein FIP1/RCP. Knockdown of FIP1/RCP or inhibition of Drp1 markedly impaired mitochondrial remodeling and actin assembly, involving Rab11a-mediated mitochondrial dynamics in E4orf4-induced signaling. A similar mobilization of mitochondria near actin-rich structures was mediated by Rab11 and Drp1 in viral Src-transformed cells and contributed to the biogenesis of podosome rosettes. These findings suggest a role for Rab11a in the trafficking of Drp1 to mitochondria upon SFK activation and unravel a novel functional interplay between Rab11a and mitochondria during reshaping of the cell cytoskeleton, which would facilitate mitochondria redistribution near energy-requiring actin-rich structures.
机译:据信线粒体动力学与细胞骨架重塑过程中的内体运输速率相协调,但所涉及的机制很大程度上未知。腺病毒4区早期ORF4蛋白(E4orf4)破坏Src家族激酶(SFK)的信号传导,扰乱细胞形态,膜运输和细胞器动力学并触发细胞死亡。使用E4orf4作为模型,我们发现了线粒体塑造蛋白与小的GTPase Rab11a之间的功能联系,GTPase Rab11a是通过再循环内体来极化运输的关键调节因子。我们发现E4orf4诱导线粒体的形态发生了巨大变化,并以SFK和Rab11a控制的方式在代表E4orf4作用的极化肌动蛋白网络附近动员了线粒体。线粒体重塑与Rab11a和线粒体膜之间的邻近程度增加,融合裂变动力学的变化以及裂变因子动力相关蛋白1(Drp1)的线粒体重新定位有关,后者受Rab11a效应蛋白FIP1 / RCP调控。击倒FIP1 / RCP或抑制Drp1明显损害线粒体重塑和肌动蛋白组装,涉及Rab11a介导的线粒体动力学在E4orf4诱导的信号传导中。 Rab11和Drp1在病毒Src转化的细胞中介导线粒体在富含肌动蛋白的结构附近的类似动员,并有助于足小体玫瑰花结的生物发生。这些发现提示Rab11a在SFK激活后将Drp1转运至线粒体中的作用,并揭示了细胞骨架重塑过程中Rab11a与线粒体之间的新型功能相互作用,这将促进线粒体在能量丰富的肌动蛋白结构附近的重新分布。

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