首页> 外文期刊>Molecular biology of the cell >Ppc89 links multiple proteins, including the septation initiation network, to the core of the fission yeast spindle-pole body
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Ppc89 links multiple proteins, including the septation initiation network, to the core of the fission yeast spindle-pole body

机译:Ppc89将包括分隔启动网络在内的多种蛋白质连接到裂变酵母纺锤体的核心

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The spindle-pole body (SPB), the yeast analog of the centrosome, serves as the major microtubule (MT) organizing center in the yeast cell. In addition to this central function, the SPB organizes and concentrates proteins required for proper coordination between the nuclear-division cycle and cytokinesis. For example, the Schizosaccharomyces pombe septation-initiation network (SIN), which is responsible for initiating actomyosin ring constriction and septation, is assembled at the SPB through its two scaffolding components, Sid4 and Cdc11. In an effort to identify novel SIN interactors, we purified Cdc11 and identified by mass spectrometry a previously uncharacterized protein associated with it, Ppc89. Ppc89 localizes constitutively to the SPB and interacts directly with Sid4. A fusion between the N-terminal 300 amino acids of Sid4 and a SPB targeting domain of Ppc89 supplies the essential function of Sid4 in anchoring the SIN. ppc89 Delta cells are inviable and exhibit defects in SPB integrity, and hence in spindle formation, chromosome segregation, and SIN localization. Ppc89 overproduction is lethal, resulting primarily in a G2 arrest accompanied by massive enlargement of the SPB and increased SPB MT nucleation. These results suggest a fundamental role for Ppc89 in organization of the S. pombe SPB.
机译:纺锤极体(SPB)是中心体的酵母类似物,是酵母细胞中主要的微管(MT)组织中心。除了这一核心功能,SPB还组织并浓缩了核分裂周期和胞质分裂之间适当协调所需的蛋白质。例如,负责启动放线菌素环收缩和分离的粟酒裂殖酵母(Schizosaccharomyces pombe)分离启动网络(SIN)通过其两个脚手架组件Sid4和Cdc11在SPB处组装。为了鉴定新型SIN相互作用子,我们纯化了Cdc11并通过质谱鉴定了与之相关的先前未鉴定的蛋白质Ppc89。 Ppc89本地化地位于SPB中,并直接与Sid4交互。 Sid4的N末端300个氨基酸与Ppc89的SPB靶向结构域之间的融合提供了Sid4在锚定SIN中的基本功能。 ppc89 Delta细胞是无法生存的,并且在SPB完整性方面存在缺陷,因此在纺锤体形成,染色体分离和SIN定位方面也存在缺陷。 Ppc89的过量生产具有致死性,主要导致G2停滞,同时SPB大量扩大和SPB MT成核增加。这些结果暗示了Ppc89在粟酒裂殖酵母SPB的组织中的基本作用。

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