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Molecular model of fission yeast centrosome assembly determined by superresolution imaging

机译:超分辨率成像确定裂变酵母中心体组装的分子模型

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Microtubule-organizing centers (MTOCs), known as centrosomes in animals and spindle pole bodies (SPBs) in fungi, are important for the faithful distribution of chromosomes between daughter cells during mitosis as well as for other cellular functions. The cytoplasmic duplication cycle and regulation of the Schizosaccharomyces pombe SPB is analogous to centrosomes, making it an ideal model to study MTOC assembly. Here, we use superresolution structured illumination microscopy with single-particle averaging to localize 14 S. pombe SPB components and regulators, determining both the relationship of proteins to each other within the SPB and how each protein is assembled into a new structure during SPB duplication. These data enabled us to build the first comprehensive molecular model of the S. pombe SPB, resulting in structural and functional insights not ascertained through investigations of individual subunits, including functional similarities between Ppc89 and the budding yeast SPB scaffold Spc42, distribution of Sad1 to a ring-like structure and multiple modes of Mto1 recruitment.
机译:微管组织中心(MTOC),在动物中被称为中心体,在真菌中被称为纺锤极体(SPB),对于在有丝分裂过程中忠实地分配子细胞之间的染色体以及其他细胞功能非常重要。粟酒裂殖酵母SPB的细胞质复制周期和调控类似于中心体,使其成为研究MTOC装配的理想模型。在这里,我们使用超分辨率结构照明显微镜和单粒子平均来定位14个粟酒裂殖酵母SPB组件和调节剂,确定SPB中蛋白质彼此之间的关系以及在SPB复制过程中每种蛋白质如何组装成新的结构。这些数据使我们能够建立第一个完整的粟酒裂殖酵母SPB分子模型,通过对单个亚基的研究无法确定结构和功能的见解,包括Ppc89和发芽的酵母SPB支架Spc42之间的功能相似性,Sad1分布到酵母中。环状结构和Mto1募集的多种模式。

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