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参与肌醇焦磷酸合成的酶Plc1p、Arg82p和Kcs1p对于酿酒酵母中的磷酸盐调节和多聚磷酸盐积累至关重要。

Plc1p, Arg82p, and Kcs1p, enzymes involved in inositol pyrophosphate synthesis, are essential for phosphate regulation and polyphosphate accumulation in Saccharomyces cerevisiae.

作者信息

Auesukaree Choowong, Tochio Hidehito, Shirakawa Masahiro, Kaneko Yoshinobu, Harashima Satoshi

机构信息

Department of Biotechnology, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

J Biol Chem. 2005 Jul 1;280(26):25127-33. doi: 10.1074/jbc.M414579200. Epub 2005 May 2.

Abstract

In Saccharomyces cerevisiae, the phosphate signal transduction PHO pathway is involved in regulating several phosphate-responsive genes such as PHO5, which encodes repressible acid phosphatase. In this pathway, a cyclin-dependent kinase inhibitor (Pho81p) regulates the kinase activity of the cyclin-cyclin-dependent kinase complex Pho80p-Pho85p, which phosphorylates the transcription factor Pho4p in response to intracellular phosphate levels. However, how cells sense phosphate availability and transduce the phosphate signal to Pho81p remains unknown. To identify additional components of the PHO pathway, we have screened a collection of yeast deletion strains. We found that disruptants of PLC1, ARG82, and KCS1, which are involved in the synthesis of inositol polyphosphate, and ADK1, which encodes adenylate kinase, constitutively express PHO5. Each of these factors functions upstream of Pho81p and negatively regulates the PHO pathway independently of intracellular orthophosphate levels. Overexpression of KCS1, but not of the other genes, suppressed PHO5 expression in the wild-type strain under low phosphate conditions. These results raise the possibility that diphosphoinositol tetrakisphosphate and/or bisdiphosphoinositol triphosphate may be essential for regulation of the PHO pathway. Furthermore, the Deltaplc1, Deltaarg82, and Deltakcs1 deletion strains, but not the Deltaipk1 deletion strain, had significantly reduced intracellular polyphosphate levels, suggesting that enzymes involved in inositol pyrophosphate synthesis are also required for polyphosphate accumulation.

摘要

在酿酒酵母中,磷酸盐信号转导PHO途径参与调控多个磷酸盐响应基因,如编码可阻遏酸性磷酸酶的PHO5。在该途径中,一种细胞周期蛋白依赖性激酶抑制剂(Pho81p)调节细胞周期蛋白 - 细胞周期蛋白依赖性激酶复合物Pho80p - Pho85p的激酶活性,该复合物根据细胞内磷酸盐水平使转录因子Pho4p磷酸化。然而,细胞如何感知磷酸盐可用性并将磷酸盐信号传递给Pho81p仍不清楚。为了鉴定PHO途径的其他组分,我们筛选了一组酵母缺失菌株。我们发现参与肌醇多磷酸合成的PLC1、ARG82和KCS1以及编码腺苷酸激酶的ADK1的破坏突变体组成型表达PHO5。这些因子中的每一个都在Pho81p的上游起作用,并且独立于细胞内正磷酸盐水平对PHO途径进行负调控。在低磷酸盐条件下,KCS1的过表达而非其他基因的过表达抑制了野生型菌株中PHO5的表达。这些结果增加了二磷酸肌醇四磷酸和/或双二磷酸肌醇三磷酸可能对PHO途径调控至关重要的可能性。此外,Delta plc1、Delta arg82和Delta kcs1缺失菌株而非Delta ipk1缺失菌株的细胞内多磷酸盐水平显著降低,这表明肌醇焦磷酸合成中涉及的酶对于多磷酸盐积累也是必需的。

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