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spectraplakin Short stop 是一种肌动蛋白微管交联蛋白,有助于微管网络的组织。

The spectraplakin Short stop is an actin-microtubule cross-linker that contributes to organization of the microtubule network.

机构信息

Department of Biology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

出版信息

Mol Biol Cell. 2010 May 15;21(10):1714-24. doi: 10.1091/mbc.e10-01-0011. Epub 2010 Mar 24.

Abstract

The dynamics of actin and microtubules are coordinated in a variety of cellular and morphogenetic processes; however, little is known about the molecules mediating this cytoskeletal cross-talk. We are studying Short stop (Shot), the sole Drosophila spectraplakin, as a model actin-microtubule cross-linking protein. Spectraplakins are an ancient family of giant cytoskeletal proteins that are essential for a diverse set of cellular functions; yet, we know little about the dynamics of spectraplakins and how they bridge actin filaments and microtubules. In this study we describe the intracellular dynamics of Shot and a structure-function analysis of its role as a cytoskeletal cross-linker. We find that Shot interacts with microtubules using two different mechanisms. In the cell interior, Shot binds growing plus ends through an interaction with EB1. In the cell periphery, Shot associates with the microtubule lattice via its GAS2 domain, and this pool of Shot is actively engaged as a cross-linker via its NH(2)-terminal actin-binding calponin homology domains. This cross-linking maintains microtubule organization by resisting forces that produce lateral microtubule movements in the cytoplasm. Our results provide the first description of the dynamics of these important proteins and provide key insight about how they function during cytoskeletal cross-talk.

摘要

肌动蛋白和微管的动力学在各种细胞和形态发生过程中是协调一致的;然而,对于介导这种细胞骨架交叉对话的分子知之甚少。我们正在研究 Short stop(Shot),即果蝇 spectraplakin 的唯一成员,作为肌动蛋白-微管交联蛋白的模型。spectraplakins 是一种古老的巨大细胞骨架蛋白家族,对于一系列不同的细胞功能是必不可少的;然而,我们对 spectraplakins 的动力学及其如何桥接肌动蛋白丝和微管知之甚少。在这项研究中,我们描述了 Shot 的细胞内动力学及其作为细胞骨架交联蛋白的结构-功能分析。我们发现 Shot 通过两种不同的机制与微管相互作用。在细胞内部,Shot 通过与 EB1 的相互作用与生长的微管正端结合。在细胞外围,Shot 通过其 GAS2 结构域与微管晶格结合,并且该 Shot 池通过其 NH2-末端肌动蛋白结合钙调蛋白同源结构域作为交联剂积极参与,通过其 NH2-末端肌动蛋白结合钙调蛋白同源结构域。这种交联通过抵抗在细胞质中产生侧向微管运动的力来维持微管的组织。我们的结果首次描述了这些重要蛋白的动力学,并提供了有关它们在细胞骨架交叉对话中如何发挥作用的关键见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8478/2869377/2360e878ce03/zmk0101094470001.jpg

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