Two-Component Mediated Peroxide Sensing and Signal Transduction in Fission Yeast

波姆裂殖酵母 响应调节器 组氨酸激酶 信号转导 双组分调节系统 生物 细胞生物学 转录因子 裂殖酵母 氧化应激 激酶 生物化学 氧化磷酸化 基因表达调控 酵母 基因 组氨酸 酿酒酵母 突变体
作者
Janet Quinn,Panagiota Malakasi,Deborah A. Smith,Jill Cheetham,Vicky Buck,Jonathan Millar,Brian A. Morgan
出处
期刊:Antioxidants & Redox Signaling [Mary Ann Liebert, Inc.]
卷期号:15 (1): 153-165 被引量:27
标识
DOI:10.1089/ars.2010.3345
摘要

Two-component related proteins play a major role in regulating the oxidative stress response in the fission yeast, Schizosaccharomyces pombe. For example, the peroxide-sensing Mak2 and Mak3 histidine kinases regulate H(2)O(2)-induced activation of the Sty1 stress-activated protein kinase pathway, and the Skn7-related response regulator transcription factor, Prr1, is essential for activation of the core oxidative stress response genes. Here, we investigate the mechanism by which the S. pombe two-component system senses H(2)O(2), and the potential role of two-component signaling in the regulation of Prr1. Significantly, we demonstrate that PAS and GAF domains present in the Mak2 histidine kinase are essential for redox-sensing and activation of Sty1. In addition, we find that Prr1 is required for the transcriptional response to a wide range of H(2)O(2) concentrations and, furthermore, that two-component regulation of Prr1 is specifically required for the response of cells to high levels of H(2)O(2). Significantly, this provides the first demonstration that the conserved two-component phosphorylation site on Skn7-related proteins influences resistance to oxidative stress and oxidative stress-induced gene expression. Collectively, these data provide new insights into the two-component mediated sensing and signaling mechanisms underlying the response of S. pombe to oxidative stress.
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