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Chlamydomonas Kinesin-II–dependent Intraflagellar Transport (IFT): IFT Particles Contain Proteins Required for Ciliary Assembly in Caenorhabditis elegans Sensory Neurons

机译:衣藻肌动蛋白-II依赖鞭毛内运输(IFT):IFT颗粒包含秀丽隐杆线虫感觉神经元的睫状组装所需的蛋白质。

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摘要

We previously described a kinesin-dependent movement of particles in the flagella of Chlamydomonas reinhardtii called intraflagellar transport (IFT) (Kozminski, K.G., K.A. Johnson, P. Forscher, and J.L. Rosenbaum. 1993. Proc. Natl. Acad. Sci. USA. 90:5519–5523). When IFT is inhibited by inactivation of a kinesin, FLA10, in the temperature-sensitive mutant, fla10, existing flagella resorb and new flagella cannot be assembled. We report here that: (a) the IFT-associated FLA10 protein is a subunit of a heterotrimeric kinesin; (b) IFT particles are composed of 15 polypeptides comprising two large complexes; (c) the FLA10 kinesin-II and IFT particle polypeptides, in addition to being found in flagella, are highly concentrated around the flagellar basal bodies; and, (d) mutations affecting homologs of two of the IFT particle polypeptides in Caenorhabditis elegans result in defects in the sensory cilia located on the dendritic processes of sensory neurons. In the accompanying report by Pazour, G.J., C.G. Wilkerson, and G.B. Witman (1998. J. Cell Biol. 141:979–992), a Chlamydomonas mutant (fla14) is described in which only the retrograde transport of IFT particles is disrupted, resulting in assembly-defective flagella filled with an excess of IFT particles. This microtubule- dependent transport process, IFT, defined by mutants in both the anterograde (fla10) and retrograde (fla14) transport of isolable particles, is probably essential for the maintenance and assembly of all eukaryotic motile flagella and nonmotile sensory cilia.
机译:我们以前描述了莱茵衣藻鞭毛中颗粒的驱动蛋白依赖性运动,称为鞭毛内运输(IFT)(Kozminski,KG,KA Johnson,P. Forscher,and JL Rosenbaum。1993. Proc。Natl。Acad。Sci。USA。 90:5519–5523)。当温度敏感突变体fla10中的驱动蛋白FLA10失活抑制IFT时,现有鞭毛再吸收和新鞭毛无法组装。我们在这里报告:(a)与IFT相关的FLA10蛋白是异源三聚体驱动蛋白的亚基; (b)IFT颗粒由15种多肽组成,包含两种大的复合物; (c)除了在鞭毛中发现外,FLA10驱动蛋白-II和IFT颗粒多肽高度集中在鞭毛基体周围; (d)影响秀丽隐杆线虫中两个IFT颗粒多肽的同源物的突变导致位于感觉神经元树突过程中的感觉纤毛的缺陷。在Pazour,G.J.,C.G.的随附报告中威尔克森和G.B. Witman(1998. J. Cell Biol。141:979–992)是衣原体突变体(fla14),其中仅IFT颗粒的逆行运输被破坏,导致装配缺陷的鞭毛充满了过量的IFT颗粒。这种微管依赖性转运过程,即IFT,由可分离颗粒的顺向(fla10)和逆向(fla14)转运中的突变体定义,可能对于所有真核活动性鞭毛和非活动性感觉纤毛的维持和组装都是必不可少的。

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