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Regulation of flagellar motility by the conserved flagellar protein CG34110/Ccdc135/FAP50

机译:保守的鞭毛蛋白CG34110 / Ccdc135 / FAP50对鞭毛运动的调节

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摘要

Eukaryotic cilia and flagella are vital sensory and motile organelles. The calcium channel PKD2 mediates sensory perception on cilia and flagella, and defects in this can contribute to ciliopathic diseases. Signaling from Pkd2-dependent Ca~(2+) rise in the cilium to downstream effectors may require intermediary proteins that are largely unknown. To identify these proteins, we carried out genetic screens for mutations affecting Drosophila melanogaster sperm storage, a process mediated by Drosophila Pkd2. Here we show that a new mutation lost boys (lobo) encodes a conserved flagellar protein CG34110, which corresponds to vertebrate Ccdc135 (E = 6e-78) highly expressed in ciliated respiratory epithelia and sperm, and to FAP50 (E = 1e-28) in the Chlamydomonas reinhardtii flagellar proteome. CG34110 localizes along the fly sperm flagellum. FAP50 is tightly associated with the outer doublet microtubules of the axoneme and appears not to be a component of the central pair, radial spokes, dynein arms, or structures defined by the mbo waveform mutants. Phenotypic analyses indicate that both Pkd2 and lobo specifically affect sperm movement into the female storage receptacle. We hypothesize that the CG34110/Ccdc135/FAP50 family of conserved flagellar proteins functions within the axoneme to mediate Pkd2-dependent processes in the sperm flagellum and other motile cilia.
机译:真核纤毛和鞭毛是重要的感觉和运动细胞器。钙通道PKD2介导纤毛和鞭毛的感官知觉,其中的缺陷可导致纤毛疾病。从纤毛中依赖Pkd2的Ca〜(2+)升高向下游效应子发出信号可能需要大量未知的中间蛋白。为了鉴定这些蛋白质,我们进行了遗传筛选,以检测影响果蝇Pkd2介导的果蝇果蝇精子的突变。在这里,我们显示了一个新的丢失突变的男孩(肺)编码保守的鞭毛蛋白CG34110,其对应于在纤毛呼吸道上皮和精子中高表达的脊椎动物Ccdc135(E = 6e-78)和FAP50(E = 1e-28)在莱茵衣藻鞭毛蛋白质组中。 CG34110定位于蝇类精子鞭毛。 FAP50与轴突的外部双峰微管紧密相关,并且似乎不是中央对,径向辐条,动力蛋白臂或mbo波形突变体定义的结构的组成部分。表型分析表明Pkd2和lobo都特别影响精子向雌性存储容器中的运动。我们假设保守的鞭毛蛋白的CG34110 / Ccdc135 / FAP50家族在轴突内起作用,以介导精子鞭毛和其他运动性纤毛中的Pkd2依赖性过程。

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