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Marshalin 是微管负端结合蛋白,可调节 Corti 器中的细胞骨架结构。

Marshalin, a microtubule minus-end binding protein, regulates cytoskeletal structure in the organ of Corti.

机构信息

Department of Otolaryngology - Head and Neck Surgery, Feinberg School of Medicine, Northwestern University , Chicago, IL 60611 , USA ; Hugh Knowles Center for Clinical and Basic Science in Hearing and Its Disorders, Northwestern University , Evanston, IL 60208 , USA.

出版信息

Biol Open. 2013 Sep 17;2(11):1192-202. doi: 10.1242/bio.20135603. eCollection 2013.

Abstract

Dramatic structural changes in microtubules (MT) and the assembly of complicated intercellular connections are seen during the development of the cellular matrix of the sense organ for hearing, the organ of Corti. This report examines the expression of marshalin, a minus-end binding protein, during this process of cochlear development. We discovered that marshalin is abundantly expressed in both sensory hair cells and supporting cells. In the adult, prominent marshalin expression is observed in the cuticular plates of hair cells and in the noncentrosomal MT organization centers (MTOC) of Deiters' and pillar cells. Based upon differences in marshalin expression patterns seen in the organ of Corti, we identified eight isoforms ranging from 863 to 1280 amino acids. mRNAs/proteins associated with marshalin's isoforms are detected at different times during development. These isoforms carry various protein-protein interacting domains, including coiled-coil (CC), calponin homology (CH), proline-rich (PR), and MT-binding domains, referred to as CKK. We, therefore, examined membranous organelles and structural changes in the cytoskeleton induced by expressing two of these marshalin isoforms in vitro. Long forms containing CC and PR domains induce thick, spindle-shaped bundles, whereas short isoforms lacking CC and PR induce more slender variants that develop into densely woven networks. Together, these data suggest that marshalin is closely associated with noncentrosomal MTOCs, and may be involved in MT bundle formation in supporting cells. As a scaffolding protein with multiple isoforms, marshalin is capable of modifying cytoskeletal networks, and consequently organelle positioning, through interactions with various protein partners present in different cells.

摘要

在听觉感觉器官——柯蒂氏器的细胞基质发育过程中,可以观察到微管(MT)的剧烈结构变化和复杂细胞间连接的组装。本报告研究了微管末端结合蛋白——marshalin 在耳蜗发育过程中的表达情况。我们发现 marshalin 在感觉毛细胞和支持细胞中均大量表达。在成年期,毛细胞的表皮板和 Deiters 细胞和支柱细胞的非中心体 MT 组织中心(MTOC)中观察到明显的 marshalin 表达。根据柯蒂氏器中 marshalin 表达模式的差异,我们鉴定了 8 种从 863 到 1280 个氨基酸的同工型。与 marshalin 同工型相关的 mRNAs/蛋白质在发育过程中的不同时间被检测到。这些同工型携带各种蛋白相互作用域,包括卷曲螺旋(CC)、钙调蛋白同源(CH)、富含脯氨酸(PR)和 MT 结合域,称为 CKK。因此,我们在体外表达两种 marshalin 同工型时,研究了膜细胞器和细胞骨架的结构变化。含有 CC 和 PR 结构域的长同工型诱导形成厚的、纺锤形束,而缺乏 CC 和 PR 的短同工型诱导形成更细的变体,进一步发展为紧密编织的网络。总之,这些数据表明 marshalin 与非中心体 MTOC 密切相关,可能参与支持细胞中的 MT 束形成。作为一种具有多种同工型的支架蛋白,marshalin 能够通过与不同细胞中存在的各种蛋白伴侣相互作用,修饰细胞骨架网络,并因此改变细胞器的定位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0d5/3828766/2bd307b0d19e/bio-02-11-1192-f01.jpg

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