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酿酒酵母应激传感器Mid2p的综合分析,以及与Mid2p相互作用的蛋白Zeo1p的鉴定,该蛋白可调节PKC1-MPK1细胞完整性通路。

A synthetic analysis of the Saccharomyces cerevisiae stress sensor Mid2p, and identification of a Mid2p-interacting protein, Zeo1p, that modulates the PKC1-MPK1 cell integrity pathway.

作者信息

Green Robin, Lesage Guillaume, Sdicu Anne-Marie, Ménard Patrice, Bussey Howard

机构信息

Department of Biology, McGill University, Montreal, Quebec, Canada H3A 1B1.

出版信息

Microbiology (Reading). 2003 Sep;149(Pt 9):2487-2499. doi: 10.1099/mic.0.26471-0.

DOI:10.1099/mic.0.26471-0
PMID:12949174
Abstract

Mid2p is a plasma membrane protein that functions in Saccharomyces cerevisiae as a sensor of cell wall stress, activating the PKC1-MPK1 cell integrity pathway via the small GTPase Rho1p during exposure to mating pheromone, calcofluor white, and heat. To examine Mid2p signalling, a global synthetic interaction analysis of a mid2 mutant was performed; this identified 11 interacting genes. These include WSC1 and ROM2, upstream elements in cell integrity pathway signalling, and FKS1 and SMI1, required for 1,3-beta-glucan synthesis. These synthetic interactions indicate that the Wsc1p sensor acts through Rom2p to activate the Fks1p glucan synthase in a Mid2p-independent way. To further explore Mid2p signalling a two-hybrid screen was done using the cytoplasmic tail of Mid2p; this identified ZEO1 (YOL109w), encoding a 12 kDa peripheral membrane protein that localizes to the plasma membrane. Disruption of ZEO1 leads to resistance to calcofluor white and to a Mid2p-dependent constitutive phosphorylation of Mpk1p, supporting a role for Zeo1p in the cell integrity pathway. Consistent with this, zeo1-deficient cells suppress the growth defect of mutants in the Rho1p GDP-GTP exchange factor Rom2p, while exacerbating the growth defect of sac7delta mutants at 37 degrees C. In contrast, mid2delta mutants have opposing effects to zeo1delta mutants, being synthetically lethal with rom2delta, and suppressing an 18 degrees C growth defect of sac7delta, while overexpression of MID2 rescues a rom2delta 37 degrees C growth defect. Thus, MID2 and ZEO1 appear to play reciprocal roles in the modulation of the yeast PKC1-MPK1 cell integrity pathway.

摘要

Mid2p是一种质膜蛋白,在酿酒酵母中作为细胞壁应激的传感器发挥作用,在暴露于交配信息素、荧光增白剂和热的过程中,通过小GTP酶Rho1p激活PKC1 - MPK1细胞完整性途径。为了研究Mid2p信号传导,对mid2突变体进行了全局合成相互作用分析;这鉴定出了11个相互作用基因。其中包括WSC1和ROM2,它们是细胞完整性途径信号传导的上游元件,以及1,3 - β - 葡聚糖合成所需的FKS1和SMI1。这些合成相互作用表明,Wsc1p传感器通过Rom2p以不依赖Mid2p的方式激活Fks1p葡聚糖合酶。为了进一步探索Mid2p信号传导,使用Mid2p的细胞质尾巴进行了双杂交筛选;这鉴定出了ZEO1(YOL109w),它编码一种12 kDa的外周膜蛋白,定位于质膜。ZEO1的破坏导致对荧光增白剂的抗性以及Mpk1p的Mid2p依赖性组成型磷酸化,支持Zeo1p在细胞完整性途径中的作用。与此一致的是,缺乏zeo1的细胞抑制了Rho1p GDP - GTP交换因子Rom2p中突变体的生长缺陷,同时加剧了sac7delta突变体在37℃时的生长缺陷。相比之下,mid2delta突变体对zeo1delta突变体有相反的作用,与rom2delta合成致死,并抑制sac7delta在18℃时的生长缺陷,而MID2的过表达挽救了rom2delta在37℃时的生长缺陷。因此,MID2和ZEO1似乎在酵母PKC1 - MPK1细胞完整性途径的调节中发挥相反的作用。

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