首页> 美国卫生研究院文献>Cell Regulation >The Fission Yeast spo14+ Gene Encoding a Functional Homologue of Budding Yeast Sec12 Is Required for the Development of Forespore Membranes
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The Fission Yeast spo14+ Gene Encoding a Functional Homologue of Budding Yeast Sec12 Is Required for the Development of Forespore Membranes

机译:裂殖酵母spo14 +基因编码芽酵母Sec12的功能同源物是需要的前孢子膜的发展。

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摘要

The Schizosaccharomyces pombe spo14-B221 mutant was originally isolated as a sporulation-deficient mutant. However, the spo14+ gene is essential for cell viability and growth. spo14+ is identical to the previously characterized stl1+ gene encoding a putative homologue of Saccharomyces cerevisiae Sec12, which is essential for protein transport from the endoplasmic reticulum (ER) to the Golgi apparatus. In the spo14 mutant cells, ER-like membranes were accumulated beneath the plasma membrane and the ER/Golgi shuttling protein Rer1 remained in the ER. Sec12 is a guanine nucleotide exchange factor for the Sar1 GTPase. Overproduction of psr1+ coding for an S. pombe Sar1 homologue suppressed both the sporulation defect of spo14-B221 and cold-sensitive growth of newly isolated spo14-6 and spo14-7 mutants. These results indicate that Spo14 is involved in early steps of the protein secretory pathway. The spo14-B221 allele carries a single nucleotide change in the branch point consensus of the fifth intron, which reduces the abundance of the spo14 mRNA. During meiosis II, the forespore membrane was initiated near spindle pole bodies; however, subsequent extension of the membrane was arrested before its closure into a sac. We conclude that Spo14 is responsible for the assembly of the forespore membrane by supplying membrane vesicles.
机译:粟酒裂殖酵母spo14-B221突变体最初被分离为芽孢形成缺陷型突变体。但是,spo14 + 基因对于细胞活力和生长至关重要。 spo14 + 与先前表征的stl1 + 基因相同,该基因编码啤酒酵母Sec12的推定同源物,这对于从内质网(ER)到高尔基体的蛋白质转运至关重要仪器。在spo14突变细胞中,类似ER的膜积聚在质膜下,并且ER /高尔基穿梭蛋白Rer1保留在ER中。 Sec12是Sar1 GTPase的鸟嘌呤核苷酸交换因子。过量表达编码S. pombe Sar1同源物的psr1 + 既抑制了spo14-B221的孢子形成缺陷,又抑制了新分离的spo14-6和spo14-7突变体的冷敏生长。这些结果表明Spo14参与蛋白质分泌途径的早期步骤。 spo14-B221等位基因在第五个内含子的分支点共有序列中具有单个核苷酸变化,从而降低了 spo14 mRNA的丰度。在减数分裂II期间,孢子膜在纺锤极体附近开始。然而,随后膜的延伸在其闭合成囊之前被阻止。我们得出结论,Spo14通过提供膜囊泡负责包被膜。

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