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GAR22β调节细胞迁移、精子活力和轴丝结构。

GAR22β regulates cell migration, sperm motility, and axoneme structure.

作者信息

Gamper Ivonne, Fleck David, Barlin Meltem, Spehr Marc, El Sayad Sara, Kleine Henning, Maxeiner Sebastian, Schalla Carmen, Aydin Gülcan, Hoss Mareike, Litchfield David W, Lüscher Bernhard, Zenke Martin, Sechi Antonio

机构信息

Institute for Biomedical Engineering, Department of Cell Biology, RWTH Aachen University Medical School, D-52074 Aachen, Germany Helmholtz Institute for Biomedical Engineering, RWTH Aachen University, D-52074 Aachen, Germany.

Institute for Biology II, Department of Chemosensation, RWTH Aachen University, D-52074 Aachen, Germany.

出版信息

Mol Biol Cell. 2016 Jan 15;27(2):277-94. doi: 10.1091/mbc.E15-06-0426. Epub 2015 Nov 12.

Abstract

Spatiotemporal cytoskeleton remodeling is pivotal for cell adhesion and migration. Here we investigated the function of Gas2-related protein on chromosome 22 (GAR22β), a poorly characterized protein that interacts with actin and microtubules. Primary and immortalized GAR22β(-/-) Sertoli cells moved faster than wild-type cells. In addition, GAR22β(-/-) cells showed a more prominent focal adhesion turnover. GAR22β overexpression or its reexpression in GAR22β(-/-) cells reduced cell motility and focal adhesion turnover. GAR22β-actin interaction was stronger than GAR22β-microtubule interaction, resulting in GAR22β localization and dynamics that mirrored those of the actin cytoskeleton. Mechanistically, GAR22β interacted with the regulator of microtubule dynamics end-binding protein 1 (EB1) via a novel noncanonical amino acid sequence, and this GAR22β-EB1 interaction was required for the ability of GAR22β to modulate cell motility. We found that GAR22β is highly expressed in mouse testes, and its absence resulted in reduced spermatozoa generation, lower actin levels in testes, and impaired motility and ultrastructural disorganization of spermatozoa. Collectively our findings identify GAR22β as a novel regulator of cell adhesion and migration and provide a foundation for understanding the molecular basis of diverse cytoskeleton-dependent processes.

摘要

时空细胞骨架重塑对于细胞黏附和迁移至关重要。在此,我们研究了22号染色体上Gas2相关蛋白(GAR22β)的功能,该蛋白特征尚不明确,可与肌动蛋白和微管相互作用。原代和永生化的GAR22β(-/-)支持细胞比野生型细胞移动得更快。此外,GAR22β(-/-)细胞表现出更显著的粘着斑周转。GAR22β在GAR22β(-/-)细胞中的过表达或重新表达降低了细胞运动性和粘着斑周转。GAR22β与肌动蛋白的相互作用强于其与微管的相互作用,导致GAR22β的定位和动态变化反映了肌动蛋白细胞骨架的定位和动态变化。从机制上讲,GAR22β通过一个新的非经典氨基酸序列与微管动力学调节因子末端结合蛋白1(EB1)相互作用,而这种GAR22β-EB1相互作用是GAR22β调节细胞运动能力所必需的。我们发现GAR22β在小鼠睾丸中高度表达,其缺失导致精子生成减少、睾丸中肌动蛋白水平降低以及精子运动性受损和超微结构紊乱。总的来说,我们的研究结果确定GAR22β是细胞黏附和迁移的新型调节因子,并为理解多种细胞骨架依赖性过程的分子基础提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/831c/4713131/0a33de4b9eb3/277fig1.jpg

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