Toba Shiori, Gibson Tracie M, Shiroguchi Katsuyuki, Toyoshima Yoko Y, Asai David J
Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo, Japan.
Cell Motil Cytoskeleton. 2004 May;58(1):30-8. doi: 10.1002/cm.10174.
An important challenge is to understand the functional specialization of dynein heavy chains. The ciliary outer arm dynein from Tetrahymena thermophila is a heterotrimer of three heavy chains, called alpha, beta and gamma. In order to dissect the contributions of the individual heavy chains, we used controlled urea treatment to dissociate Tetrahymena outer arm dynein into a 19S beta/gamma dimer and a 14S alpha heavy chain. The three heavy chains remained full-length and retained MgATPase activity. The beta/gamma dimer bound microtubules in an ATP-sensitive fashion. The isolated alpha heavy chain also bound microtubules, but this binding was not reversed by ATP. The 19S beta/gamma dimer and the 14S alpha heavy chain could be reconstituted into 22S dynein. The intact 22S dynein, the 19S beta/gamma dimer, and the reconstituted dynein all produced microtubule gliding motility. In contrast, the separated alpha heavy chain did not produce movement under a variety of conditions. The intact 22S dynein produced movement that was discontinuous and slower than the movement produced by the 19S dimer. We conclude that the three heavy chains of Tetrahymena outer arm dynein are functionally specialized. The alpha heavy chain may be responsible for the structural binding of dynein to the outer doublet A-tubule and/or the positioning of the beta/gamma motor domains near the surface of the microtubule track.
一个重要的挑战是了解动力蛋白重链的功能特化。嗜热四膜虫的纤毛外臂动力蛋白是由三条重链组成的异源三聚体,分别称为α、β和γ。为了剖析各条重链的作用,我们采用可控尿素处理将嗜热四膜虫外臂动力蛋白解离成一个19S的β/γ二聚体和一个14S的α重链。这三条重链保持全长并保留了MgATP酶活性。β/γ二聚体以ATP敏感的方式结合微管。分离出的α重链也能结合微管,但这种结合不会被ATP逆转。19S的β/γ二聚体和14S的α重链可以重新组装成22S动力蛋白。完整的22S动力蛋白、19S的β/γ二聚体以及重新组装的动力蛋白都能产生微管滑动运动。相比之下,分离出的α重链在各种条件下都不会产生运动。完整的22S动力蛋白产生的运动是不连续的,且比19S二聚体产生的运动慢。我们得出结论,嗜热四膜虫外臂动力蛋白的三条重链在功能上是特化的。α重链可能负责动力蛋白与外双联A微管的结构结合和/或β/γ运动结构域在微管轨道表面附近的定位。