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Arg82p是一种双功能蛋白,其肌醇多磷酸激酶活性对于酵母中的氮和PHO基因表达至关重要,但对于Mcm1p伴侣功能则并非必需。

Arg82p is a bifunctional protein whose inositol polyphosphate kinase activity is essential for nitrogen and PHO gene expression but not for Mcm1p chaperoning in yeast.

作者信息

El Alami Mohamed, Messenguy Francine, Scherens Bart, Dubois Evelyne

机构信息

Institut de Recherches Microbiologiques J-M Wiame, Laboratoire de Microbiologie de l'Université Libre de Bruxelles, 1 avenue Emile Gryzon, 1070 Bruxelles, Belgium.

出版信息

Mol Microbiol. 2003 Jul;49(2):457-68. doi: 10.1046/j.1365-2958.2003.03562.x.

DOI:10.1046/j.1365-2958.2003.03562.x
PMID:12828642
Abstract

In Saccharomyces cerevisiae, the synthesis of inositol pyrophosphates is essential for vacuole biogenesis and the cell's response to certain environmental stresses. The kinase activity of Arg82p and Kcs1p is required for the production of soluble inositol phosphates. To define physiologically relevant targets of the catalytic products of Arg82p and Kcs1p, we used DNA microarray technology. In arg82delta or kcs1delta cells, we observed a derepressed expression of genes regulated by phosphate (PHO) on high phosphate medium and a strong decrease in the expression of genes regulated by the quality of nitrogen source (NCR). Arg82p and Kcs1p are required for activation of NCR-regulated genes in response to nitrogen availability, mainly through Nil1p, and for repression of PHO genes by phosphate. Only the catalytic activity of both kinases was required for PHO gene repression by phosphate and for NCR gene activation in response to nitrogen availability, indicating a role for inositol pyrophosphates in these controls. Arg82p also controls expression of arginine-responsive genes by interacting with Arg80p and Mcm1p, and expression of Mcm1-dependent genes by interacting with Mcm1p. We show here that Mcm1p and Arg80p chaperoning by Arg82p does not involve the inositol polyphosphate kinase activity of Arg82p, but requires its polyaspartate domain. Our results indicate that Arg82p is a bifunctional protein whose inositol kinase activity plays a role in multiple signalling cascades, and whose acidic domain protects two MADS-box proteins against degradation.

摘要

在酿酒酵母中,肌醇焦磷酸的合成对于液泡生物发生和细胞对某些环境胁迫的反应至关重要。Arg82p和Kcs1p的激酶活性是可溶性肌醇磷酸产生所必需的。为了确定Arg82p和Kcs1p催化产物的生理相关靶点,我们使用了DNA微阵列技术。在arg82delta或kcs1delta细胞中,我们观察到在高磷酸盐培养基上受磷酸盐(PHO)调控的基因表达去抑制,以及受氮源质量(NCR)调控的基因表达大幅下降。Arg82p和Kcs1p主要通过Nil1p,对于响应氮可用性激活NCR调控的基因以及对于磷酸盐抑制PHO基因是必需的。仅两种激酶的催化活性对于磷酸盐抑制PHO基因和响应氮可用性激活NCR基因是必需的,这表明肌醇焦磷酸在这些调控中发挥作用。Arg82p还通过与Arg80p和Mcm1p相互作用来控制精氨酸响应基因的表达,并通过与Mcm1p相互作用来控制Mcm1依赖性基因的表达。我们在此表明,Arg82p对Mcm1p和Arg80p的伴侣作用不涉及Arg82p的肌醇多磷酸激酶活性,但需要其聚天冬氨酸结构域。我们的结果表明,Arg82p是一种双功能蛋白,其肌醇激酶活性在多个信号级联中发挥作用,并且其酸性结构域保护两种MADS盒蛋白不被降解。

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