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首页> 外文期刊>OMICS: A journal of integrative biology >Integrative Responses to High pH Stress in S. cerevisiae
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Integrative Responses to High pH Stress in S. cerevisiae

机译:综合应对高pH值的压力。酵母

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The budding yeast Saccharomyces cerevisiae grows far better at acidic than at neutral or alkaline pH. Consequently, even a modest alkalinization of the medium represents a stressful situation for this yeast. In the past few years, data generated by a combination of genome-wide techniques has demonstrated that adaptive responses of S. cerevisiae to high pH stress involves extensive gene remodeling as a result of the fast activation of a number of stress-related signaling pathways, such as the Rim101, the Wsc1-Pkc1-Slt2 MAP kinase, and the calciumactivated calcineurin pathways. Alkalinization of the environment also disturbs nutrient homeostasis, as deduced from its impact on iron/copper, phosphate, and glucose uptake/utilization pathways. In this review we will examine these responses, their possible interactions, and the role that they play in tolerance to high pH stress.
机译:的出芽酵母酿酒酵母生长比在中性或酸性碱性要好得多博士因此,即便是适度的碱化媒介代表一个压力的情况这种酵母。通过全基因组技术的结合证明了S的适应性反应。酵母高pH值压力涉及广泛快速基因改造的结果激活与压力有关信号通路,比如Rim101,Wsc1-Pkc1-Slt2 MAP激酶,calciumactivated钙调磷酸酶通路。碱化的环境也扰乱了营养体内平衡,推导出其影响在铁/铜、磷酸、葡萄糖吸收/利用途径。将检查这些反应,可能吗互动,他们扮演的角色容忍高pH值的压力。

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