首页> 美国卫生研究院文献>Cell Regulation >The Schizosaccharomyces pombe spo20+ Gene Encoding a Homologue of Saccharomyces cerevisiae Sec14 Plays an Important Role in Forespore Membrane Formation
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The Schizosaccharomyces pombe spo20+ Gene Encoding a Homologue of Saccharomyces cerevisiae Sec14 Plays an Important Role in Forespore Membrane Formation

机译:粟酒裂殖酵母spo20 +基因 编码啤酒酵母Sec14的同源物 在前孢子膜形成中起重要作用

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摘要

The Schizosaccharomyces pombe spo20-KC104 mutation was originally isolated in a screen for sporulation-deficient mutants, and the spo20-KC104 mutant exhibits temperature-sensitive growth. Herein, we report that S. pombe, spo20+ is essential for fission yeast cell viability and is constitutively expressed throughout the life cycle. We also demonstrate that the spo20+ gene product is structurally homologous to Saccharomyces cerevisiae Sec14, the major phosphatidylinositol transfer protein of budding yeast. This structural homology translates to a significant degree of functional relatedness because reciprocal complementation experiments demonstrate that each protein is able to fulfill the essential function of the other. Moreover, biochemical experiments show that, like Sec14, Spo20 is a phosphatidylinositol/phosphatidylcholine-transfer protein. That Spo20 is required for Golgi secretory function in vegetative cells is indicated by our demonstration that the spo20-KC104 mutant accumulates aberrant Golgi cisternae at restrictive temperatures. However, a second phenotype observed in Spo20-deficient fission yeast is arrest of cell division before completion of cell separation. Consistent with a direct role for Spo20 in controlling cell septation in vegetatively growing cells, localization experiments reveal that Spo20 preferentially localizes to the cell poles and to sites of septation of fission yeast cells. We also report that, when fission yeasts are challenged with nitrogen starvation, Spo20 translocates to the nucleus. This nuclear localization persists during conjugation and meiosis. On completion of meiosis, Spo20 translocates to forespore membranes, and it is the assembly of forespore membranes that is abnormal in spo20-KC104 cells. In such mutants, a considerable fraction of forming prespores fail to encapsulate the haploid nucleus. Our results indicate that Spo20 regulates the formation of specialized membrane structures in addition to its recognized role in regulating Golgi secretory function.
机译:粟酒裂殖酵母spo20-KC104突变最初是在缺乏芽孢的突变体的筛选中分离出来的,并且spo20-KC104突变体表现出对温度敏感的生长。在本文中,我们报道了粟酒裂殖酵母spo20 + 对裂变酵母细胞的生存能力至关重要,并且在整个生命周期中均组成型表达。我们还证明了spo20 + 基因产物与酿酒酵母Sec14(发芽酵母的主要磷脂酰肌醇转移蛋白)在结构上同源。这种结构同源性转化为很大程度的功能相关性,因为相互互补的实验表明,每种蛋白质都能够履行彼此的基本功能。此外,生化实验表明,与Sec14一样,Spo20是磷脂酰肌醇/磷脂酰胆碱转移蛋白。 Spo20-KC104证明了Spo20是营养细胞中高尔基体分泌功能所必需的 突变体在限制性条件下累积异常高尔基池 温度。然而,在Spo20缺陷中观察到第二种表型 裂变酵母在细胞完成之前阻止细胞分裂 分离。与Spo20在控制细胞中的直接作用一致 营养生长细胞的分离,定位实验 揭示Spo20优先定位于细胞极和 裂变酵母细胞的分离位点。我们还报告说, 裂殖酵母受到氮饥饿Spo20的挑战 易位至细胞核。这种核定位在 接合和减数分裂。减数分裂完成后,Spo20易位 到孢子膜,这是孢子膜的组装 在spo20-KC104细胞中异常。在这样的突变体中 形成孢子的相当一部分未能包封 单倍体核。我们的结果表明Spo20可以调节 除了它的形成特殊的膜结构 公认在调节高尔基体分泌功能中的作用。

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