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肌动蛋白分子踏车模型和肌球蛋白维持静纤毛的功能结构和自我更新。

An actin molecular treadmill and myosins maintain stereocilia functional architecture and self-renewal.

作者信息

Rzadzinska Agnieszka K, Schneider Mark E, Davies Caroline, Riordan Gavin P, Kachar Bechara

机构信息

Section on Structural Cell Biology, National Institute of Deafness and Other Communication Disorders, National Institutes of Health, Bldg. 50/Rm. 4249, 50 South Dr., Bethesda, MD 20892-8027, USA.

出版信息

J Cell Biol. 2004 Mar 15;164(6):887-97. doi: 10.1083/jcb.200310055.

Abstract

We have previously shown that the seemingly static paracrystalline actin core of hair cell stereocilia undergoes continuous turnover. Here, we used the same approach of transfecting hair cells with actin-green fluorescent protein (GFP) and espin-GFP to characterize the turnover process. Actin and espin are incorporated at the paracrystal tip and flow rearwards at the same rate. The flux rates (approximately 0.002-0.04 actin subunits s(-1)) were proportional to the stereocilia length so that the entire staircase stereocilia bundle was turned over synchronously. Cytochalasin D caused stereocilia to shorten at rates matching paracrystal turnover. Myosins VI and VIIa were localized alongside the actin paracrystal, whereas myosin XVa was observed at the tips at levels proportional to stereocilia lengths. Electron microscopy analysis of the abnormally short stereocilia in the shaker 2 mice did not show the characteristic tip density. We argue that actin renewal in the paracrystal follows a treadmill mechanism, which, together with the myosins, dynamically shapes the functional architecture of the stereocilia bundle.

摘要

我们之前已经表明,毛细胞静纤毛看似静态的副晶状肌动蛋白核心会持续更新。在此,我们采用相同的方法,用肌动蛋白-绿色荧光蛋白(GFP)和espin-GFP转染毛细胞,以表征更新过程。肌动蛋白和espin在副晶顶端掺入,并以相同速率向后流动。通量率(约0.002 - 0.04个肌动蛋白亚基每秒)与静纤毛长度成正比,从而使整个阶梯状静纤毛束同步更新。细胞松弛素D导致静纤毛以与副晶更新相匹配的速率缩短。肌球蛋白VI和VIIa定位于肌动蛋白副晶旁,而肌球蛋白XVa则在顶端以与静纤毛长度成正比的水平被观察到。对摇椅2型小鼠中异常短的静纤毛进行电子显微镜分析,未显示出特征性的顶端密度。我们认为,副晶中的肌动蛋白更新遵循一种踏车机制,该机制与肌球蛋白一起,动态塑造了静纤毛束的功能结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d863/2172292/e29fc333a98f/200310055f1.jpg

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