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Self-assembling SAS-6 Multimer Is a Core Centriole Building Block

机译:自组装SAS-6多聚体是核心离心构建基块

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摘要

Centrioles are conserved microtubule-based organelles with 9-fold symmetry that are essential for cilia and mitotic spindle formation. A conserved structure at the onset of centriole assembly is a “cartwheel” with 9-fold radial symmetry and a central tubule in its core. It remains unclear how the cartwheel is formed. The conserved centriole protein, SAS-6, is a cartwheel component that functions early in centriole formation. Here, combining biochemistry and electron microscopy, we characterize SAS-6 and show that it self-assembles into stable tetramers, which serve as building blocks for the central tubule. These results suggest that SAS-6 self-assembly may be an initial step in the formation of the cartwheel that provides the 9-fold symmetry. Electron microscopy of centrosomes identified 25-nm central tubules with repeating subunits and show that SAS-6 concentrates at the core of the cartwheel. Recombinant and native SAS-6 self-oligomerizes into tetramers with ∼6-nm subunits, and these tetramers are components of the centrosome, suggesting that tetramers are the building blocks of the central tubule. This is further supported by the observation that elevated levels of SAS-6 in Drosophila cells resulted in higher order structures resembling central tubule morphology. Finally, in the presence of embryonic extract, SAS-6 tetramers assembled into high density complexes, providing a starting point for the eventual in vitro reconstruction of centrioles.
机译:质心是保守的基于微管的细胞器,具有9倍的对称性,对于纤毛和有丝分裂纺锤体形成至关重要。中心粒组装开始时的保守结构是“风轮”,其径向对称性是9倍,其中心是中央小管。尚不清楚车轮如何形成。保守的中心蛋白SAS-6是车轮成分,在中心蛋白形成的早期发挥作用。在这里,结合生物化学和电子显微镜,我们对SAS-6进行了表征,并表明它可以自组装成稳定的四聚体,可作为中央小管的构建基块。这些结果表明,SAS-6自组装可能是形成9倍对称性的车轮形成的第一步。中心体的电子显微镜鉴定出具有重复亚基的25 nm中央小管,表明SAS-6集中在车轮的核心。重组的和天然的SAS-6自寡聚为具有〜6-nm亚基的四聚体,这些四聚体是中心体的组成部分,表明四聚体是中央小管的组成部分。果蝇细胞中SAS-6水平升高会导致类似于中央小管形态的高阶结构,这进一步证明了这一点。最后,在存在胚胎提取物的情况下,SAS-6四聚体组装成高密度复合物,为最终体外重建中心粒提供了起点。

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