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首页> 外文期刊>Journal of cell biology >Assembly of flagellar radial spoke proteins in Chlamydomonas: identification of the axoneme binding domain of radial spoke protein 3.
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Assembly of flagellar radial spoke proteins in Chlamydomonas: identification of the axoneme binding domain of radial spoke protein 3.

机译:衣藻中鞭毛放射状辐条蛋白的组装:放射状辐条蛋白3的轴突结合域的鉴定。

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Radial spokes of the eukaryotic flagellum extend from the A tubule of each outer doublet microtubule toward the central pair microtubules. In the paralyzed flagella mutant of Chlamydomonas pf14, a mutation in the gene for one of 17 polypeptides that comprise the radial spokes results in flagella that lack all 17 spoke components. The defective gene product, radial spoke protein 3 (RSP3), is, therefore, pivotal to the assembly of the entire spoke and may attach the spoke to the axoneme. We have synthesized RSP3 in vitro and assayed its binding to axonemes from pf14 cells to determine if RSP3 can attach to spokeless axonemes. In vitro, RSP3 binds to pf14 axonemes, but not to wild-type axonemes or microtubules polymerized from purified chick brain tubulin. The sole axoneme binding domain of RSP3 is located within amino acids 1-85 of the 516 amino acid protein; deletion of these amino acids abolishes binding by RSP3. Fusion of amino acids 1-85 or 42-85 to an unrelated protein confers complete or partial binding activity, respectively, to the fusion protein. Transformation of pf14 cells with mutagenized RSP3 genes indicates that amino acids 18-87 of RSP3 are important to its function, but that the carboxy-terminal 140 amino acids can be deleted with little effect on radial spoke assembly or flagellar motility.
机译:真核鞭毛的放射状辐条从每个外部双峰微管的A小管向中央对微管延伸。在衣藻pf14的瘫痪鞭毛突变体中,构成放射状辐条的17种多肽之一的基因突变导致鞭毛缺乏全部17种辐条成分。因此,有缺陷的基因产物放射状辐条蛋白3(RSP3)对整个辐条的装配至关重要,并且可能会将辐条连接到轴突上。我们已经在体外合成了RSP3,并分析了它与pf14细胞中轴突蛋白的结合,以确定RSP3是否可以附着在无语轴突蛋白上。在体外,RSP3与pf14轴蛋白结合,但不与从纯化的鸡脑微管蛋白聚合的野生型轴蛋白或微管结合。 RSP3的唯一轴蛋白结合结构域位于516个氨基酸蛋白的1-85位氨基酸内。这些氨基酸的缺失消除了RSP3的结合。氨基酸1-85或42-85与无关蛋白的融合分别赋予融合蛋白完全或部分的结合活性。用诱变的RSP3基因转化pf14细胞表明,RSP3的氨基酸18-87对它的功能很重要,但是可以删除羧基末端的140个氨基酸,而对径向辐条装配或鞭毛运动几乎没有影响。

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