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蛋白激酶C信号通路的过度激活可抑制酿酒酵母中缺乏Rho3/Rho4-GAP Rgd1p的细胞的缺陷。

Overactivation of the protein kinase C-signaling pathway suppresses the defects of cells lacking the Rho3/Rho4-GAP Rgd1p in Saccharomyces cerevisiae.

作者信息

de Bettignies G, Thoraval D, Morel C, Peypouquet M F, Crouzet M

机构信息

Laboratoire de Biologie Moléculaire et de Séquençage, UMR CNRS 5095, Bordeaux Cedex, France.

出版信息

Genetics. 2001 Dec;159(4):1435-48. doi: 10.1093/genetics/159.4.1435.

Abstract

The nonessential RGD1 gene encodes a Rho-GTPase activating protein for the Rho3 and Rho4 proteins in Saccharomyces cerevisiae. Previous studies have revealed genetic interactions between RGD1 and the SLG1 and MID2 genes, encoding two putative sensors for cell integrity signaling, and VRP1 encoding an actin and myosin interacting protein involved in polarized growth. To better understand the role of Rgd1p, we isolated multicopy suppressor genes of the cell lethality of the double mutant rgd1Delta mid2Delta. RHO1 and RHO2 encoding two small GTPases, MKK1 encoding one of the MAP-kinase kinases in the protein kinase C (PKC) pathway, and MTL1, a MID2-homolog, were shown to suppress the rgd1Delta defects strengthening the functional links between RGD1 and the cell integrity pathway. Study of the transcriptional activity of Rlm1p, which is under the control of Mpk1p, the last kinase of the PKC pathway, and follow-up of the PST1 transcription, which is positively regulated by Rlm1p, indicate that the lack of RGD1 function diminishes the PKC pathway activity. We hypothesize that the rgd1Delta inactivation, at least through the hyperactivation of the small GTPases Rho3p and Rho4p, alters the secretory pathway and/or the actin cytoskeleton and decreases activity of the PKC pathway.

摘要

非必需基因RGD1在酿酒酵母中编码一种针对Rho3和Rho4蛋白的Rho - GTPase激活蛋白。先前的研究揭示了RGD1与SLG1和MID2基因之间的遗传相互作用,SLG1和MID2基因编码细胞完整性信号传导的两种假定传感器,以及VRP1,VRP1编码一种参与极性生长的肌动蛋白和肌球蛋白相互作用蛋白。为了更好地理解Rgd1p的作用,我们分离了双突变体rgd1Δmid2Δ细胞致死性的多拷贝抑制基因。结果表明,编码两种小GTP酶的RHO1和RHO2、编码蛋白激酶C(PKC)途径中的一种MAP激酶激酶的MKK1以及MID2同源物MTL1可抑制rgd1Δ缺陷,加强了RGD1与细胞完整性途径之间的功能联系。对受PKC途径的最后一种激酶Mpk1p控制的Rlm1p转录活性的研究,以及对受Rlm1p正向调控的PST1转录的跟踪,表明RGD1功能的缺失会降低PKC途径的活性。我们推测,rgd1Δ失活,至少通过小GTP酶Rho3p和Rho4p的过度激活,改变了分泌途径和/或肌动蛋白细胞骨架,并降低了PKC途径的活性。

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RGD1 genetically interacts with MID2 and SLG1, encoding two putative sensors for cell integrity signalling in Saccharomyces cerevisiae.
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