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Calcineurin Regulatory Subunit Calcium-Binding Domains Differentially Contribute to Calcineurin Signaling in Saccharomyces cerevisiae

机译:钙调神经磷酸调节亚基钙结合域差异地促成啤酒酵母中钙调磷酸酶的信号转导。

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摘要

The protein phosphatase calcineurin is central to Ca2+ signaling pathways from yeast to humans. Full activation of calcineurin requires Ca2+ binding to the regulatory subunit CNB, comprised of four Ca2+-binding EF hand domains, and recruitment of Ca2+-calmodulin. Here we report the consequences of disrupting Ca2+ binding to individual EF hand domains on calcineurin function in Saccharomyces cerevisiae. Calcineurin activity was monitored via quantitation of the calcineurin-dependent reporter gene, CDRE-lacZ, and calcineurin-dependent growth under conditions of environmental stress. Mutation of EF2 dramatically reduced CDRE-lacZ expression and failed to support calcineurin-dependent growth. In contrast, Ca2+ binding to EF4 was largely dispensable for calcineurin function. Mutation of EF1 and EF3 exerted intermediate phenotypes. Reduced activity of EF1, EF2, or EF3 mutant calcineurin was also observed in yeast lacking functional and could not be rescued by expression of a truncated catalytic subunit lacking the C-terminal autoinhibitory domain either alone or in conjunction with the binding and autoinhibitory segment domains. Ca2+ binding to EF1, EF2, and EF3 in response to intracellular Ca2+ signals therefore has functions in phosphatase activation beyond recruitment and displacement of known autoinhibitory domains. Disruption of Ca2+ binding to EF1, EF2, or EF3 reduced Ca2+ responsiveness of calcineurin, but increased the sensitivity of calcineurin to immunophilin-immunosuppressant inhibition. Mutation of EF2 also increased the susceptibility of calcineurin to hydrogen peroxide inactivation. Our observations indicate that distinct EF hand domains differentially affect calcineurin function in vivo, and that EF4 is not essential despite conservation across taxa.
机译:磷酸磷酸钙调磷酸酶蛋白是从酵母到人类的Ca 2 + 信号通路的关键。钙调神经磷酸酶的完全激活需要Ca 2 + 与调节亚基CNB结合,该调控亚基由四个结合Ca 2 + 的EF手域组成,并募集Ca 2+ -钙调蛋白。在这里,我们报道了在酿酒酵母中破坏Ca 2 + 与单个EF手域结合对钙调神经磷酸酶功能的影响。钙调神经磷酸酶活性是通过在环境压力条件下定量钙调神经磷酸酶依赖性报道基因CDRE-lacZ和钙调神经磷酸酶依赖性生长来监测的。 EF2突变会大大降低CDRE-lacZ表达,并且无法支持钙调磷酸酶依赖性生长。相比之下,Ca 2 + 与EF4的结合对于钙调神经磷酸酶的功能很大程度上是必需的。 EF1和EF3的突变表现出中间表型。在缺乏功能的酵母中也观察到EF1,EF2或EF3突变钙调神经磷酸酶活性降低,并且无法通过表达缺乏C端自体抑制域的截短催化亚基单独或结合结合和自体抑制域来表达而无法挽救。因此,Ca 2 + 响应细胞内Ca 2 + 信号而与EF1,EF2和EF3结合,在磷酸酶激活中具有功能,除了募集和置换已知的自抑制域外。 Ca 2 + 与EF1,EF2或EF3结合的破坏降低了钙调神经磷酸酶的Ca 2 + 反应性,但增加了钙调神经磷酸酶对免疫亲和素免疫抑制剂抑制的敏感性。 EF2的突变也增加了钙调神经磷酸酶对过氧化氢失活的敏感性。我们的观察结果表明,不同的EF手域在体内差异性影响钙调神经磷酸功能,尽管整个分类单元均具有保守性,但EF4并不是必需的。

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