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对缺乏外动力蛋白臂的四膜虫轴丝上22S动力蛋白结合情况的分析。

Analyses of 22S dynein binding to Tetrahymena axonemes lacking outer dynein arms.

作者信息

Sullivan J, Ludmann S A, Hamasaki T, Pennock D G

机构信息

Department of Zoology, Miami University, Oxford, Ohio 45056, USA.

出版信息

J Eukaryot Microbiol. 1996 Jan-Feb;43(1):5-11. doi: 10.1111/j.1550-7408.1996.tb02466.x.

Abstract

Tetrahymena thermophila mutants homozygous for the oad mutation become nonmotile when grown at the restrictive temperature of 39 degrees C. Axonemes isolated from nonmotile oad mutants (oad 39 degrees C axonemes) lack approximately 90% of their outer dynein arms and are deficient in 22S dynein. Here we report that oad 39 degrees C axonemes contain 40% of the 22S dynein heavy chains that wild-type axonemes contain and that oad axonemes do not undergo ATP-induced microtubule sliding in vitro. Wild-type 22S dynein will bind to the outer arm position in oad axonemes and restore ATP-induced microtubule sliding in those axonemes. Unlike wild-type 22S dynein, oad 22S dynein does not bind to the outer arm position in oad axonemes. These data indicate that the oad mutation affects some component of the outer arm dynein itself rather than the outer arm dynein binding site. These data also indicate that oad axonemes can be used to assay outer dynein arm function.

摘要

嗜热四膜虫oad突变的纯合子突变体在39摄氏度的限制温度下生长时会变得无法运动。从无法运动的oad突变体中分离出的轴丝(oad 39摄氏度轴丝)缺少约90%的外动力蛋白臂,并且缺乏22S动力蛋白。我们在此报告,oad 39摄氏度轴丝含有野生型轴丝所含22S动力蛋白重链的40%,并且oad轴丝在体外不会发生ATP诱导的微管滑动。野生型22S动力蛋白会结合到oad轴丝的外臂位置,并在这些轴丝中恢复ATP诱导的微管滑动。与野生型22S动力蛋白不同,oad 22S动力蛋白不会结合到oad轴丝的外臂位置。这些数据表明,oad突变影响外臂动力蛋白本身的某些成分,而不是外臂动力蛋白结合位点。这些数据还表明,oad轴丝可用于检测外动力蛋白臂的功能。

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