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首页> 外文期刊>Molecular biology of the cell >A Highlights from MBoC Selection: Dynamic localization of a yeast development–specific PP1 complex during prospore membrane formation is dependent on multiple localization signals and complex formation
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A Highlights from MBoC Selection: Dynamic localization of a yeast development–specific PP1 complex during prospore membrane formation is dependent on multiple localization signals and complex formation

机译:MBoC选择的亮点:胚芽膜形成过程中特定于酵母发育的PP1复合物的动态定位取决于多个定位信号和复合物的形成

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摘要

During the developmental process of sporulation in Saccharomyces cerevisiae , membrane structures called prospore membranes are formed de novo, expand, extend, acquire a round shape, and finally become plasma membranes of the spores. GIP1 encodes a regulatory/targeting subunit of protein phosphatase type 1 that is required for sporulation. Gip1 recruits the catalytic subunit Glc7 to septin structures that form along the prospore membrane; however, the molecular basis of its localization and function is not fully understood. Here we show that Gip1 changes its localization dynamically and is required for prospore membrane extension. Gip1 first associates with the spindle pole body as the prospore membrane forms, moves onto the prospore membrane and then to the septins as the membrane extends, distributes around the prospore membrane after closure, and finally translocates into the nucleus in the maturing spore. Deletion and mutation analyses reveal distinct sequences in Gip1 that are required for different localizations and for association with Glc7. Binding to Glc7 is also required for proper localization. Strikingly, localization to the prospore membrane, but not association with septins, is important for Gip1 function. Further, our genetic analysis suggests that a Gip1–Glc7 phosphatase complex regulates prospore membrane extension in parallel to the previously reported Vps13, Spo71, Spo73 pathway.
机译:在酿酒酵母的孢子形成过程中,称为新孢子膜的膜结构从头形成,膨胀,延伸,呈圆形,最后变成孢子的质膜。 GIP1编码孢子形成所必需的蛋白磷酸酶1型的调控/靶向亚基。 Gip1将催化亚基Glc7募集到沿孢子膜形成的septin结构;然而,其定位和功能的分子基础尚未完全了解。在这里,我们显示Gip1动态改变其定位,并且是孢子膜延伸所必需的。 Gip1随孢子膜的形成先与纺锤极体缔合,移至孢子膜上,然后随着膜的延伸而进入隔膜,在闭合后在孢子膜周围分布,最后在成熟的孢子中转移到细胞核中。缺失和突变分析揭示了Gip1中不同的序列,这些序列对于不同的定位以及与Glc7的关联都是必需的。正确定位也需要与Glc7结合。引人注目的是,定位到子孢子膜而不与Septins结合对于Gip1功能很重要。此外,我们的遗传分析表明,与先前报道的Vps13,Spo71,Spo73途径平行,Gip1-Glc7磷酸酶复合物可调节孢子膜的延伸。

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