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首页> 外文期刊>Molecular Microbiology >The Schizosaccharomyces pombe fusion gene hal3 encodes three distinct activities
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The Schizosaccharomyces pombe fusion gene hal3 encodes three distinct activities

机译:粟酒裂殖酵母融合基因hal3编码三个不同的活动

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Summary: Saccharomyces cerevisiaeHal3 and Vhs3 are moonlighting proteins, forming an atypical heterotrimeric decarboxylase (PPCDC) required for CoA biosynthesis, and regulating cation homeostasis by inhibition of the Ppz1 phosphatase. The Schizosaccharomyces pombeORF SPAC15E1.04 (renamed as Sphal3) encodes a protein whose amino-terminal half is similar to Sc Hal3 whereas its carboxyl-terminal half is related to thymidylate synthase (TS). We show that SpHal3 and/or its N-terminal domain retain the ability to bind to and modestly inhibit in vitro S.cerevisiaePpz1 as well as its S.pombe homolog Pzh1, and also exhibit PPCDC activity in vitro and provide PPCDC function in vivo, indicating that SpHal3 is a monogenic PPCDC in fission yeast. Whereas the Sp Hal3 N-terminal domain partially mimics Sc Hal3 functions, the entire protein and its carboxyl-terminal domain rescue the S.cerevisiaecdc21 mutant, thus proving TS function. Additionally, we show that the 70kDa Sp Hal3 protein is not proteolytically processed under diverse forms of stress and that, as predicted, Sphal3 is an essential gene. Therefore, Sphal3 represents a fusion event that joined three different functional activities in the same gene. The possible advantage derived from this surprising combination of essential proteins is discussed.
机译:简介:酿酒酵母Hal3和Vhs3是月光蛋白,形成CoA生物合成所需的非典型异三聚脱羧酶(PPCDC),并通过抑制Ppz1磷酸酶来调节阳离子稳态。粟酒裂殖酵母SPAC15E1.04(重命名为Sphal3)编码一种蛋白质,其氨基末端一半类似于Sc Hal3,而其羧基末端一半与胸苷酸合酶(TS)有关。我们显示SpHal3和/或其N末端结构域保留结合并适度抑制体外S.cerevisiaePpz1及其S.pombe同源物Pzh1的能力,并且在体外也具有PPCDC活性并在体内提供PPCDC功能,表明SpHal3是裂变酵母中的单基因PPCDC。 Sp Hal3 N末端结构域部分模仿Sc Hal3的功能,而整个蛋白质及其羧基末端结构域拯救了S.cerevisiaecdc21突变体,从而证明了TS的功能。此外,我们显示70kDa Sp Hal3蛋白在多种形式的压力下均不会经过蛋白水解处理,并且正如所预测的,Sphal3是必需基因。因此,Sphal3代表一个融合事件,在同一基因中加入了三个不同的功能性活动。讨论了从必需蛋白质的这种令人惊讶的组合中获得的可能优势。

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