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莱茵衣藻中影响中央微管结构的一种新突变体的超微结构和生化分析

Ultrastructural and biochemical analysis of a new mutation in Chlamydomonas reinhardtii affecting the central pair apparatus.

作者信息

Vucica Y, Diener D R, Rosenbaum J L, Koutoulis A

机构信息

Cell Biology Group, School of Plant Science, University of Tasmania, Hobart, Tasmania, Australia.

出版信息

Protoplasma. 2007;232(1-2):121-30. doi: 10.1007/s00709-007-0273-8. Epub 2007 Dec 24.

Abstract

We present a new Chlamydomonas reinhardtii flagellar mutant in which central pair projections are missing and the central pair microtubules are twisted along the length of the flagellum. We have named this mutant tcp1 for twisted central pair. Immunoblots using an antibody that recognizes the heavy chain of sea urchin kinesin reveal that a 70 kDa protein present in wild-type and pf18 (central pairless) axonemes is absent in tcp1, suggesting the presence of an uncharacterized kinesin associated with the central pair apparatus. We demonstrate that the kinesin-like protein Klp1 is not attached to central pair microtubules in tcp1, but rather is located in, or is part of, a region we have termed the internal axonemal matrix. It is proposed that this matrix acts as a scaffold for axonemal proteins that may also be associated with the central pair apparatus.

摘要

我们展示了一种新的莱茵衣藻鞭毛突变体,其中中央微管突出缺失,中央微管沿鞭毛长度扭曲。我们将此突变体命名为tcp1(扭曲中央微管)。使用识别海胆驱动蛋白重链的抗体进行的免疫印迹显示,野生型和pf18(无中央微管)轴丝中存在的一种70 kDa蛋白质在tcp1中不存在,这表明存在一种与中央微管装置相关的未表征驱动蛋白。我们证明,类驱动蛋白Klp1在tcp1中不附着于中央微管,而是位于我们称为轴丝内部基质的区域中,或者是该区域的一部分。有人提出,这种基质作为轴丝蛋白的支架,这些轴丝蛋白也可能与中央微管装置相关。

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