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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The Carboxy-Terminal Tails of Septins Cdc11 and Shs1 Recruit Myosin-II Binding Factor Bni5 to the Bud Neck in Saccharomyces cerevisiae
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The Carboxy-Terminal Tails of Septins Cdc11 and Shs1 Recruit Myosin-II Binding Factor Bni5 to the Bud Neck in Saccharomyces cerevisiae

机译:酿酒酵母芽孢菌Cdc11和Shs1的羧基末端尾巴招募肌球蛋白-II结合因子Bni5。

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摘要

Septins are a conserved family of GTP-binding proteins that form heterooctameric complexes that assemble into higher-order structures. In yeast, septin superstructure at the bud neck serves as a barrier to separate a daughter cell from its mother and as a scaffold to recruit the proteins that execute cytokinesis. However, how septins recruit specific factors has not been well characterized. In the accompanying article in this issue, (Finnigan et al. 2015), we demonstrated that the C-terminal extensions (CTEs) of the alternative terminal subunits of septin heterooctamers, Cdc11 and Shs1, share a role required for optimal septin function in vivo. Here we describe our use of unbiased genetic approaches (both selection of dosage suppressors and analysis of synthetic interactions) that pinpointed Bni5 as a protein that interacts with the CTEs of Cdc11 and Shs1. Furthermore, we used three independent methods-construction of chimeric proteins, noncovalent tethering mediated by a GFP-targeted nanobody, and imaging by fluorescence microscopy-to confirm that a physiologically important function of the CTEs of Cdc11 and Shs1 is optimizing recruitment of Bni5 and thereby ensuring efficient localization at the bud neck of Myo1, the type II myosin of the actomyosin contractile ring.
机译:Septins是GTP结合蛋白的保守家族,可形成组装成更高阶结构的杂八聚体复合物。在酵母中,芽颈处的Septin上层结构可作为将子代细胞与其母体分离的屏障,也可作为募集执行胞质分裂蛋白的支架。但是,Septins如何募集特定因子尚未得到很好的表征。在本期的随附文章中(Finnigan et al.2015),我们证明了Septin异八聚体的替代末端亚基Cdc11和Shs1的C末端延伸(CTE)共同具有体内最佳Septin功能所需的作用。在这里,我们描述了我们使用无偏遗传方法(选择剂量抑制剂和分析合成相互作用)将Bni5定位为与Cdc11和Shs1的CTE相互作用的蛋白质。此外,我们使用了三种独立的方法-嵌合蛋白的构建,GFP靶向纳米抗体介导的非共价束缚和荧光显微镜成像-证实Cdc11和Shs1的CTE的重要生理功能是优化Bni5的募集,从而确保肌动蛋白收缩环的II型肌球蛋白Myo1的芽颈处有效定位。

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