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Sas-4 proteins are required during basal body duplication in Paramecium

机译:草履虫基体复制过程中需要Sas-4蛋白

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摘要

Centrioles and basal bodies are structurally related organelles composed of nine microtubule (MT) triplets. Studies performed in Caenorhabditis elegans embryos have shown that centriole duplication takes place in sequential way, in which different proteins are recruited in a specific order to assemble a procentriole. ZYG-1 initiates centriole duplication by triggering the recruitment of a complex of SAS-5 and SAS-6, which then recruits the final player, SAS-4, to allow the incorporation of MT singlets. It is thought that a similar mechanism (that also involves additional proteins) is present in other animal cells, but it remains to be investigated whether the same players and their ascribed functions are conserved during basal body duplication in cells that exclusively contain basal bodies. To investigate this question, we have used the multiciliated protist Paramecium tetraurelia. Here we show that in the absence of PtSas4, two types of defects in basal body duplication can be identified. In the majority of cases, the germinative disk and cartwheel, the first structures assembled during duplication, are not detected. In addition, if daughter basal bodies were formed, they invariably had defects in MT recruitment. Our results suggest that PtSas4 has a broader function than its animal orthologues.
机译:质心和基体是与结构相关的细胞器,由九个微管(MT)三胞胎组成。在秀丽隐杆线虫胚胎中进行的研究表明,中心粒复制以顺序的方式发生,其中以特定的顺序募集不同的蛋白质来组装中心粒。 ZYG-1通过触发SAS-5和SAS-6的复合体的募集来启动中心体复制,然后再募集最终参与者SAS-4,以允许MT单线态的结合。认为在其他动物细胞中也存在类似的机制(也涉及其他蛋白质),但是在仅包含基底体的细胞中基底体复制过程中,是否保留相同的参与者及其归因于的功能仍有待研究。为了研究这个问题,我们使用了多纤毛原生生物四脲草履虫。在这里,我们表明,在不存在PtSas4的情况下,可以识别出基底体重复中的两种类型的缺陷。在大多数情况下,在复制过程中组装的第一批结构即发芽盘和车轮没有被检测到。此外,如果形成了子基体,它们在MT募集中总是存在缺陷。我们的结果表明,PtSas4具有比其动物直系同源物更广泛的功能。

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