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秀丽隐杆线虫感觉纤毛内鞭毛运输的分析。

Analysis of intraflagellar transport in C. elegans sensory cilia.

作者信息

Hao Limin, Acar Seyda, Evans James, Ou Guangshuo, Scholey Jonathan M

机构信息

Molecular and Cell Biology, University of California, Davis, California 95616, USA.

出版信息

Methods Cell Biol. 2009;93:235-66. doi: 10.1016/S0091-679X(08)93013-2. Epub 2009 Dec 4.

Abstract

Cilia are assembled and maintained by intraflagellar transport (IFT), the motor-dependent, bidirectional movement of multiprotein complexes, called IFT particles, along the axoneme. The sensory cilia of Caenorhabditis elegans represent very useful objects for studying IFT because of the availability of in vivo time-lapse fluorescence microscopy assays of IFT and multiple ciliary mutants. In this system there are 60 sensory neurons, each having sensory cilia on the endings of their dendrites, and most components of the IFT machinery operating in these structures have been identified using forward and reverse genetic approaches. By analyzing the rate of IFT along cilia within living wild-type and mutant animals, two anterograde and one retrograde IFT motors were identified, the functional coordination of the two anterograde kinesin-2 motors was established and the transport properties of all the known IFT particle components have been characterized. The anterograde kinesin motors have been heterologously expressed and purified, and their biochemical properties have been characterized using MT gliding and single molecule motility assays. In this chapter, we summarize how the tools of genetics, cell biology, electron microscopy, and biochemistry are being used to dissect the composition and mechanism of action of IFT motors and IFT particles in C. elegans.

摘要

纤毛由鞭毛内运输(IFT)组装并维持,IFT是多蛋白复合物(称为IFT颗粒)沿轴丝进行的依赖马达的双向运动。秀丽隐杆线虫的感觉纤毛是研究IFT非常有用的对象,因为可以对IFT和多种纤毛突变体进行体内延时荧光显微镜检测。在这个系统中有60个感觉神经元,每个神经元在其树突末端都有感觉纤毛,并且已经使用正向和反向遗传方法鉴定了在这些结构中运作的IFT机制的大多数成分。通过分析活的野生型和突变动物体内纤毛上的IFT速率,鉴定出了两个正向和一个反向IFT马达,确定了两个正向驱动蛋白-2马达的功能协调性,并对所有已知的IFT颗粒成分的运输特性进行了表征。正向驱动蛋白马达已被异源表达和纯化,并使用微管滑动和单分子运动分析对其生化特性进行了表征。在本章中,我们总结了遗传学、细胞生物学、电子显微镜和生物化学工具如何被用于剖析秀丽隐杆线虫中IFT马达和IFT颗粒的组成及作用机制。

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