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首页> 外文期刊>Molecular and Cellular Biology >The LIM domain-containing Dbm1 GTPase-activating protein is required for normal cellular morphogenesis in Saccharomyces cerevisiae.
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The LIM domain-containing Dbm1 GTPase-activating protein is required for normal cellular morphogenesis in Saccharomyces cerevisiae.

机译:酿酒酵母中正常细胞形态发生需要包含LIM域的Dbm1 GTPase激活蛋白。

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摘要

Normal cell growth in the yeast Saccharomyces cerevisiae involves the selection of genetically determined bud sites where most growth is localized. Previous studies have shown that BEM2, which encodes a GTPase-activating protein (GAP) that is specific for the Rho-type GTPase Rho1p in vitro, is required for proper bud site selection and bud emergence. We show here that DBM1, which encodes another putative Rho-type GAP with two tandemly arranged cysteine-rich LIM domains, also is needed for proper bud site selection, as haploid cells lacking Dbm1p bud predominantly in a bipolar, rather than the normal axial, manner. Furthermore, yeast cells lacking both Bem2p and Dbm1p are inviable. The nonaxial budding defect of dbm1 mutants can be rescued partially by overproduction of Bem3p and is exacerbated by its absence. Since Bem3p has previously been shown to function as a GAP for Cdc42p, and also less efficiently for Rho1p, our results suggest that Dbm1p, like Bem2p and Bem3p, may function in vivo as a GAP for Cdc42p and/or Rho1p. Both LIM domains of Dbm1p are essential for its normal function. Point mutations that alter single conserved cysteine residues within either LIM domain result in mutant forms of Dbm1p that can no longer function in bud site selection but instead are capable of rescuing the inviability of bem2 mutants at 35 degrees C.
机译:酿酒酵母中正常细胞的生长涉及选择遗传决定的芽部位,其中大多数生长都位于芽部位。先前的研究表明,BEM2编码一种GTPase活化蛋白(GAP),该蛋白在体外对Rho型GTPase Rho1p具有特异性,是正确选择芽位和芽出芽所必需的。我们在此处显示,DBM1编码另一个带有两个串联排列的富含半胱氨酸的LIM域的假定Rho型GAP,对于正确的芽位点选择也是必需的,因为缺乏Dbm1p芽的单倍体细胞主要在双极而不是在正常的轴向,方式。此外,缺乏Bem2p和Dbm1p的酵母细胞是无法生存的。 dbm1突变体的非轴向出芽缺陷可以通过Bem3p的过量生产得到部分挽救,而Bem3p的缺乏则加剧了这一缺陷。由于以前已显示Bem3p充当Cdc42p的GAP,但对于Rho1p的效率也较低,因此我们的结果表明,Dbm1p像Bem2p和Bem3p一样,可能在体内充当Cdc42p和/或Rho1p的GAP。 Dbm1p的两个LIM域都对其正常功能至关重要。改变任一LIM域中单个保守半胱氨酸残基的点突变会导致Dbm1p突变体形式,该突变体不再在芽位点选择中起作用,而是能够挽救bem2突变体在35摄氏度时的生存能力。

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