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Metabolic gene products have evolved to interact with the cell wall integrity pathway in Saccharomyces cerevisiae

机译:代谢基因产物已进化为与酿酒酵母中的细胞壁完整性途径相互作用

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Two of the five unlinked genes theoretically capable of encoding 5-phosphoribosyl-1(alpha)-pyrophosphate (PRPP) synthetase (Prs) in Saccharomyces cerevisiae, PRS1 and PRS5, contain in-frame insertions which separate the cation-and PRPP-binding sites, diagnostic of Prs polypeptides. The impairment of cell wall integrity (CWI) mitogen-activated protein kinase (MAPK) cascade in strains lacking PRS1 and the synthetic lethality associated with loss of PRS1 and PRS5 imply that these insertions are not gratuitous. Coimmunoprecipitation revealed that Prs1 interacts with the CWI MAPK pathway, only when Slt2 has been phosphorylated by Mkk1/2. Three serine residues identified by phosphoproteome analysis (Ficarro et al. 2002) are located in one of the insertions of PRS5 thereby defining Prs5 as one of the 11 triply phosphorylated proteins in yeast. Mutation of these phosphosites compromised the transcriptional readout of one endpoint of the CWI pathway, Rlm1, as well as the expression of the gene encoding the stress-activated 1,3 beta-glucan synthase, Fks2, regulated by a second endpoint of the CWI pathway, Swi4/Swi6 (SBF transcription factor). Therefore, the unexpected impairment of the CWI phenotype encountered in yeast strains either mutated or deleted for PRS1 or PRS5 can be explained by disruption of the communication between primary cell metabolism and CWI signalling.
机译:理论上能够在酿酒酵母中编码5个磷酸核糖基-1α-焦磷酸(PRPP)合成酶(Prs)的五个未连接基因中的两个,即PRS1和PRS5,包含框内插入物,该插入物将阳离子和PRPP结合位点分开,诊断Prs多肽。在缺乏PRS1的菌株中细胞壁完整性(CWI)丝裂原活化蛋白激酶(MAPK)级联的损伤以及与PRS1和PRS5缺失相关的合成致死性暗示这些插入不是无缘无故的。免疫共沉淀显示只有当Slt2已被Mkk1 / 2磷酸化时,Prs1才与CWI MAPK途径相互作用。通过磷酸化蛋白质组分析(Ficarro等,2002)鉴定出的三个丝氨酸残基位于PRS5的一个插入片段中,从而将Prs5定义为酵母中11种三磷酸化蛋白之一。这些磷酸位点的突变损害了CWI途径的一个终点Rlm1的转录读数,以及由CWI途径的另一个终点调节的编码应激激活的1,3β-葡聚糖合酶Fks2的基因的表达。 ,Swi4 / Swi6(SBF转录因子)。因此,可以通过破坏原代细胞代谢和CWI信号之间的通讯来解释在PRS1或PRS5突变或缺失的酵母菌株中遇到的CWI表型的意外损害。

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