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衣藻野生型和分别缺失三条重链之一的突变型外臂动力蛋白之间体外运动特性的系统比较。

Systematic comparison of in vitro motile properties between Chlamydomonas wild-type and mutant outer arm dyneins each lacking one of the three heavy chains.

作者信息

Furuta Akane, Yagi Toshiki, Yanagisawa Haru-Aki, Higuchi Hideo, Kamiya Ritsu

机构信息

Department of Biological Sciences, Graduate School of Science, University of Tokyo, Tokyo, 113-0033, Japan.

出版信息

J Biol Chem. 2009 Feb 27;284(9):5927-35. doi: 10.1074/jbc.M807830200. Epub 2009 Jan 4.

DOI:10.1074/jbc.M807830200
PMID:19124458
Abstract

Outer arm dynein (OAD) of cilia and flagella contains two or three distinct heavy chains, each having a motor function. To elucidate their functional difference, we compared the in vitro motile properties of Chlamydomonas wild-type OAD containing the alpha, beta, and gamma heavy chains and three kinds of mutant OADs, each lacking one of the three heavy chains. For systematic comparison, a method was developed to introduce a biotin tag into a subunit, LC2, which served as the specific anchoring site on an avidin-coated glass surface. Wild-type OAD displayed microtubule gliding in the presence of ATP and ADP, with a maximal velocity of 5.0 mum/s, which is approximately 1/4 of the microtubule sliding velocity in the axoneme. The duty ratio was estimated to be as low as 0.08. The absence of the beta heavy chain lowered both the gliding velocity and ATPase activity, whereas the absence of the gamma heavy chain increased both activities. Strikingly, the absence of the alpha heavy chain lowered the gliding velocity but increased the ATPase activity. Thus, the three heavy chains are likely to play distinct roles and regulate each other to achieve coordinated force production.

摘要

纤毛和鞭毛的外臂动力蛋白(OAD)包含两条或三条不同的重链,每条重链都具有运动功能。为了阐明它们的功能差异,我们比较了含有α、β和γ重链的衣藻野生型OAD以及三种突变型OAD的体外运动特性,每种突变型OAD都缺少三条重链中的一条。为了进行系统比较,我们开发了一种方法,将生物素标签引入一个亚基LC2,它作为抗生物素蛋白包被玻璃表面上的特定锚定位点。野生型OAD在ATP和ADP存在的情况下表现出微管滑动,最大速度为5.0μm/s,约为轴丝中微管滑动速度的1/4。占空比估计低至0.08。β重链的缺失降低了滑动速度和ATP酶活性,而γ重链的缺失则增加了这两种活性。令人惊讶的是,α重链的缺失降低了滑动速度,但增加了ATP酶活性。因此,这三条重链可能发挥不同的作用并相互调节,以实现协调的力产生。

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