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CCTα and CCTδ chaperonin subunits are essential and required for cilia assembly and maintenance in Tetrahymena

机译:CCTα和CCTδ伴侣蛋白亚基对于四膜虫的纤毛组装和维持至关重要

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摘要

Background - The eukaryotic cytosolic chaperonin CCT is a hetero-oligomeric complex formed by two rings connected back-to-back, each composed of eight distinct subunits (CCTalpha to CCTzeta). CCT complex mediates the folding, of a wide range of newly synthesised proteins including tubulin (alpha, beta and gamma) and actin, as quantitatively major substrates. Methodology/Principal findings - We disrupted the genes encoding CCTalpha and CCTdelta subunits in the ciliate Tetrahymena. Cells lacking the zygotic expression of either CCTalpha or CCTdelta showed a loss of cell body microtubules, failed to assemble new cilia and died within 2 cell cycles. We also show that loss of CCT subunit activity leads to axoneme shortening and splaying of tips of axonemal microtubules. An epitope-tagged CCTalpha rescued the gene knockout phenotype and localized primarily to the tips of cilia. A mutation in CCTalpha, G346E, at a residue also present in the related protein implicated in the Bardet Biedel Syndrome, BBS6, also caused defects in cilia and impaired CCTalpha localization in cilia. Conclusions/Significance - Our results demonstrate that the CCT subunits are essential and required for ciliary assembly and maintenance of axoneme structure, especially at the tips of cilia.
机译:背景-真核细胞伴侣蛋白CCT是一种杂乱的寡聚复合物,由两个背靠背连接的环形成,每个环由八个不同的亚基(CCTα至CCTzeta)组成。 CCT复合物可介导大量新合成的蛋白质(包括微管蛋白(α,β和γ)和肌动蛋白)的折叠,这是定量上主要的底物。方法/主要发现-我们破坏了纤毛四膜虫中编码CCTalpha和CCTdelta亚基的基因。缺乏CCTalpha或CCTdelta的合子表达的细胞显示细胞体微管丢失,无法组装新的纤毛并在2个细胞周期内死亡。我们还显示,CCT亚基活性的丧失导致轴突缩短和轴突微管尖端张开。带有表位标签的CCTalpha拯救了基因敲除表型,并主要位于纤毛的尖端。 CCTalpha G346E突变也存在于与Bardet Biedel综合征BBS6有关的蛋白质中,该突变也导致纤毛缺陷和CCTalpha在纤毛中的定位受损。结论/意义-我们的结果表明,CCT亚基对于纤毛的组装和维持轴突结构(特别是纤毛的尖端)是必不可少的。

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