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EHD1 介导囊泡运输,这对于正常的肌肉生长和横管发育是必需的。

EHD1 mediates vesicle trafficking required for normal muscle growth and transverse tubule development.

机构信息

Committee on Genetics, Genomics and Systems Biology, The University of Chicago, Chicago, IL 60637, USA.

Department of Pathology, The University of Chicago, Chicago, IL 60637, USA.

出版信息

Dev Biol. 2014 Mar 15;387(2):179-90. doi: 10.1016/j.ydbio.2014.01.004. Epub 2014 Jan 17.

Abstract

EHD proteins have been implicated in intracellular trafficking, especially endocytic recycling, where they mediate receptor and lipid recycling back to the plasma membrane. Additionally, EHDs help regulate cytoskeletal reorganization and induce tubule formation. It was previously shown that EHD proteins bind directly to the C2 domains in myoferlin, a protein that regulates myoblast fusion. Loss of myoferlin impairs normal myoblast fusion leading to smaller muscles in vivo but the intracellular pathways perturbed by loss of myoferlin function are not well known. We now characterized muscle development in EHD1-null mice. EHD1-null myoblasts display defective receptor recycling and mislocalization of key muscle proteins, including caveolin-3 and Fer1L5, a related ferlin protein homologous to myoferlin. Additionally, EHD1-null myoblast fusion is reduced. We found that loss of EHD1 leads to smaller muscles and myofibers in vivo. In wildtype skeletal muscle EHD1 localizes to the transverse tubule (T-tubule), and loss of EHD1 results in overgrowth of T-tubules with excess vesicle accumulation in skeletal muscle. We provide evidence that tubule formation in myoblasts relies on a functional EHD1 ATPase domain. Moreover, we extended our studies to show EHD1 regulates BIN1 induced tubule formation. These data, taken together and with the known interaction between EHD and ferlin proteins, suggests that the EHD proteins coordinate growth and development likely through mediating vesicle recycling and the ability to reorganize the cytoskeleton.

摘要

EHD 蛋白参与细胞内运输,特别是内体再循环,在此过程中它们介导受体和脂质再循环回到质膜。此外,EHD 有助于调节细胞骨架重组并诱导小管形成。先前的研究表明,EHD 蛋白直接结合肌球蛋白融合蛋白(myoferlin)的 C2 结构域,该蛋白调节成肌细胞融合。肌球蛋白融合蛋白缺失会损害正常的成肌细胞融合,导致体内肌肉变小,但肌球蛋白融合蛋白功能缺失所干扰的细胞内途径尚不清楚。我们现在描述了 EHD1 缺失型小鼠的肌肉发育情况。EHD1 缺失型成肌细胞显示出受体再循环缺陷和关键肌肉蛋白的定位错误,包括 caveolin-3 和 Fer1L5,这是一种与肌球蛋白融合蛋白同源的相关 ferlin 蛋白。此外,EHD1 缺失型成肌细胞融合减少。我们发现 EHD1 的缺失导致体内肌肉和肌纤维变小。在野生型骨骼肌中,EHD1 定位于横小管(T 小管),EHD1 的缺失导致 T 小管过度生长,骨骼肌中囊泡积累过多。我们提供的证据表明,成肌细胞中的小管形成依赖于功能性 EHD1 ATP 酶结构域。此外,我们扩展了研究,表明 EHD1 调节 BIN1 诱导的小管形成。这些数据与 EHD 和 ferlin 蛋白之间已知的相互作用结合在一起,表明 EHD 蛋白通过介导囊泡再循环和重组细胞骨架的能力来协调生长和发育。

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