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GAS2的二聚化介导微管和F-肌动蛋白的交联。

Dimerization of GAS2 mediates crosslinking of microtubules and F-actin.

作者信息

An Jiancheng, Imasaki Tsuyoshi, Narita Akihiro, Niwa Shinsuke, Sasaki Ryohei, Makino Tsukasa, Nitta Ryo, Kikkawa Masahide

机构信息

Department of Cell Biology and Anatomy, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.

Division of Structural Medicine and Anatomy, Department of Physiology and Cell Biology, Kobe University Graduate School of Medicine, Kobe, Japan.

出版信息

EMBO J. 2025 May;44(10):2997-3024. doi: 10.1038/s44318-025-00415-2. Epub 2025 Apr 1.

Abstract

The spectraplakin family protein GAS2 was originally identified as a growth arrest-specific protein, and recent studies have revealed its involvement in multiple cellular processes. Its dual interaction with actin filaments and microtubules highlights its essential role in cytoskeletal organization, such as cell division, apoptosis, and possibly tumorigenesis. However, the structural basis of cytoskeletal dynamics regulation by GAS2 remains unclear. In this study, we present cryo-electron microscopy structures of the GAS2 type 3 calponin homology domain (CH3) in complex with F-actin at 2.8 Å resolution, thus solving the first type CH3 domain structure bound to F-actin and confirming its actin-binding activity. We also provide the first near-atomic resolution cryo-EM structure of the GAS2-GAR domain bound to microtubules and identify conserved microtubule-binding residues. Our biochemical experiments show that GAS2 promotes microtubule nucleation and polymerization, and that its C-terminal region is essential for dimerization, bundling of both F-actin and microtubules, and microtubule nucleation. As mutations leading to expression of C-terminally truncated GAS2 have been linked to hearing loss, these findings suggest that the disruption of GAS2-dependent cytoskeletal organisation could underlie auditory dysfunction.

摘要

光谱斑联蛋白家族蛋白GAS2最初被鉴定为生长停滞特异性蛋白,最近的研究表明它参与多种细胞过程。它与肌动蛋白丝和微管的双重相互作用突出了其在细胞骨架组织中的重要作用,如细胞分裂、细胞凋亡以及可能的肿瘤发生。然而,GAS2调节细胞骨架动力学的结构基础仍不清楚。在本研究中,我们展示了GAS2 3型钙调蛋白同源结构域(CH3)与F-肌动蛋白复合物的冷冻电镜结构,分辨率为2.8Å,从而解析了首个与F-肌动蛋白结合的CH3结构域结构,并证实了其肌动蛋白结合活性。我们还提供了首个与微管结合的GAS2-GAR结构域的近原子分辨率冷冻电镜结构,并鉴定了保守的微管结合残基。我们的生化实验表明,GAS2促进微管成核和聚合,其C末端区域对于二聚化、F-肌动蛋白和微管的成束以及微管成核至关重要。由于导致C末端截短的GAS2表达的突变与听力损失有关,这些发现表明,GAS2依赖的细胞骨架组织破坏可能是听觉功能障碍的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb7e/12084551/6be0abb1263c/44318_2025_415_Fig1_HTML.jpg

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