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逆行鞭毛内运输(IFT)的不同突变体具有相似的形态和分子缺陷。

Distinct mutants of retrograde intraflagellar transport (IFT) share similar morphological and molecular defects.

作者信息

Piperno G, Siuda E, Henderson S, Segil M, Vaananen H, Sassaroli M

机构信息

Department of Cell Biology and Anatomy, Mount Sinai School of Medicine, New York, 10029, USA.

出版信息

J Cell Biol. 1998 Dec 14;143(6):1591-601. doi: 10.1083/jcb.143.6.1591.

Abstract

A microtubule-based transport of protein complexes, which is bidirectional and occurs between the space surrounding the basal bodies and the distal part of Chlamydomonas flagella, is referred to as intraflagellar transport (IFT). The IFT involves molecular motors and particles that consist of 17S protein complexes. To identify the function of different components of the IFT machinery, we isolated and characterized four temperature-sensitive (ts) mutants of flagellar assembly that represent the loci FLA15, FLA16, and FLA17. These mutants were selected among other ts mutants of flagellar assembly because they displayed a characteristic bulge of the flagellar membrane as a nonconditional phenotype. Each of these mutants was significantly defective for the retrograde velocity of particles and the frequency of bidirectional transport but not for the anterograde velocity of particles, as revealed by a novel method of analysis of IFT that allows tracking of single particles in a sequence of video images. Furthermore, each mutant was defective for the same four subunits of a 17S complex that was identified earlier as the IFT complex A. The occurrence of the same set of phenotypes, as the result of a mutation in any one of three loci, suggests the hypothesis that complex A is a portion of the IFT particles specifically involved in retrograde intraflagellar movement.

摘要

基于微管的蛋白质复合物运输是双向的,发生在基体周围空间和衣藻鞭毛远端之间,这种运输被称为鞭毛内运输(IFT)。IFT涉及分子马达和由17S蛋白质复合物组成的颗粒。为了确定IFT机制不同组分的功能,我们分离并鉴定了四个鞭毛组装的温度敏感(ts)突变体,它们代表FLA15、FLA16和FLA17位点。这些突变体是从其他鞭毛组装的ts突变体中筛选出来的,因为它们表现出鞭毛膜的特征性凸起,这是一种非条件表型。如一种新的IFT分析方法所揭示的,该方法允许在一系列视频图像中追踪单个颗粒,这些突变体中的每一个在颗粒逆行速度和双向运输频率方面都存在显著缺陷,但在颗粒顺行速度方面没有缺陷。此外,每个突变体在一个17S复合物的相同四个亚基上存在缺陷,该复合物先前被鉴定为IFT复合物A。由于三个位点中任何一个位点的突变导致相同一组表型的出现,这提示了一个假说,即复合物A是IFT颗粒的一部分,专门参与鞭毛内逆行运动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0e8/2132975/fbacacde8423/JCB9807071.f4.jpg

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