首页> 外文期刊>Research in Microbiology >At acidic pH, the diminished hypoxic expression of the SRP1/TIR1 yeast gene depends on the GPA2-cAMP and HOG pathways.
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At acidic pH, the diminished hypoxic expression of the SRP1/TIR1 yeast gene depends on the GPA2-cAMP and HOG pathways.

机译:在酸性pH下,SRP1 / TIR1酵母基因的低氧表达减弱取决于GPA2-cAMP和HOG途径。

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摘要

The hypoxic SRP1/TIR1 gene encodes a stress-response cell wall mannoprotein, which is shown to be necessary for yeast growth at acidic pH in the presence of sodium dodecyl sulfate. However, the hypoxic expression of SRP1 is shown to be downregulated at acidic pH. The stress-responsive HOG pathway appeared necessary to maintain hypoxic SRP1 expression, but only at acidic pH. However, unlike known HOG pathway-dependent genes, SRP1 was under positive cAMP control and was positively modulated by protein kinase A at neutral and acidic pH. In addition, the HOG-independent hypoxic HEM13 gene was also positively regulated by cAMP levels. Therefore, the positive cAMP control of the hypoxic SRP1 and HEM13 genes was uncoupled from the HOG pathway. Surprisingly, this positive cAMP control was found to be mediated by GPA2 but not by RAS2, so the Gpa2p requirement appears critical at acidic pH. Although RAS2 is not involved in the regulation of SRP1 expression, the guanine nucleotide exchange factor Cdc25, which is known to control the GTP/GDP ratio on the Ras proteins, was nevertheless required for hypoxic SRP1 expression. Furthermore, the Ras proteins did not compensate for Gpa2p requirement in a delta gpa2 mutated strain. These results suggest that the Cdc25 factor might also control Gpa2p.
机译:低氧SRP1 / TIR1基因编码应激反应的细胞壁甘露糖蛋白,这表明十二烷基硫酸钠存在下酵母在酸性pH下生长是必需的。但是,显示SRP1的低氧表达在酸性pH下被下调。应力响应性HOG途径似乎是维持低氧SRP1表达所必需的,但仅在酸性pH时才如此。但是,与已知的HOG途径依赖性基因不同,SRP1在正cAMP的控制下,并在中性和酸性pH下被蛋白激酶A正调节。另外,独立于HOG的低氧HEM13基因也受到cAMP水平的正调控。因此,缺氧的SRP1和HEM13基因的cAMP阳性控制与HOG途径脱钩。出人意料的是,发现该阳性cAMP对照是由GPA2介导的,而不是由RAS2介导的,因此Gpa2p的需求在酸性pH下显得至关重要。尽管RAS2不参与SRP1表达的调节,但是低氧SRP1表达仍需要鸟嘌呤核苷酸交换因子Cdc25,该因子可控制Ras蛋白的GTP / GDP比率。此外,在δgpa2突变菌株中,Ras蛋白不能补偿Gpa2p的需求。这些结果表明,Cdc25因子也可能控制Gpa2p。

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