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裂殖酵母孢子形成过程中隔蛋白在孢子前膜延伸方向中的作用。

Role of septins in the orientation of forespore membrane extension during sporulation in fission yeast.

机构信息

Department of Genetics, Stanford University School of Medicine, Stanford, CA 94305, USA.

出版信息

Mol Cell Biol. 2010 Apr;30(8):2057-74. doi: 10.1128/MCB.01529-09. Epub 2010 Feb 1.

Abstract

During yeast sporulation, a forespore membrane (FSM) initiates at each spindle-pole body and extends to form the spore envelope. We used Schizosaccharomyces pombe to investigate the role of septins during this process. During the prior conjugation of haploid cells, the four vegetatively expressed septins (Spn1, Spn2, Spn3, and Spn4) coassemble at the fusion site and are necessary for its normal morphogenesis. Sporulation involves a different set of four septins (Spn2, Spn5, Spn6, and the atypical Spn7) that does not include the core subunits of the vegetative septin complex. The four sporulation septins form a complex in vitro and colocalize interdependently to a ring-shaped structure along each FSM, and septin mutations result in disoriented FSM extension. The septins and the leading-edge proteins appear to function in parallel to orient FSM extension. Spn2 and Spn7 bind to phosphatidylinositol 4-phosphate [PtdIns(4)P] in vitro, and PtdIns(4)P is enriched in the FSMs, suggesting that septins bind to the FSMs via this lipid. Cells expressing a mutant Spn2 protein unable to bind PtdIns(4)P still form extended septin structures, but these structures fail to associate with the FSMs, which are frequently disoriented. Thus, septins appear to form a scaffold that helps to guide the oriented extension of the FSM.

摘要

在酵母孢子形成过程中,每个纺锤体极体都会起始一个前孢子膜 (FSM),并延伸形成孢子囊。我们使用酿酒酵母来研究在这个过程中隔孢蛋白的作用。在先前的单倍体细胞的接合过程中,四个营养表达的隔孢蛋白(Spn1、Spn2、Spn3 和 Spn4)在融合部位共同组装,并且对于其正常形态发生是必需的。孢子形成涉及一组不同的四个隔孢蛋白(Spn2、Spn5、Spn6 和非典型的 Spn7),它不包括营养隔孢复合物的核心亚基。四个孢子隔孢蛋白在体外形成复合物,并相互依赖地共定位到每个 FSM 的环形结构上,隔孢蛋白突变导致 FSM 延伸方向错乱。隔孢蛋白和前沿蛋白似乎平行作用以定向 FSM 延伸。Spn2 和 Spn7 在体外与磷脂酰肌醇 4-磷酸 [PtdIns(4)P] 结合,并且 FSM 中富含 PtdIns(4)P,表明隔孢蛋白通过这种脂质结合到 FSM 上。表达不能结合 PtdIns(4)P 的突变 Spn2 蛋白的细胞仍然形成延伸的隔孢蛋白结构,但这些结构不能与 FSM 相关联,FSM 经常方向错乱。因此,隔孢蛋白似乎形成了一个支架,有助于指导 FSM 的定向延伸。

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