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Activation of calcineurin is mainly responsible for the calcium sensitivity of gene deletion mutations in the genome of budding yeast

机译:钙调神经磷酸酶的激活主要是导致发芽酵母基因组中基因缺失突变的钙敏感性的原因

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摘要

Here we have identified 120 gene deletion mutants that are sensitive to 0.4M calcium in Saccharomyces cerevisiae. Twenty-seven of these mutants are of genes involved in the vacuolar protein sorting pathway, including those encoding the seven components of the ESCRT complexes, and ten of them encode the components and assembly factors of the vacuolar H+-ATPase. Both Mediator and Paf1 complexes modulating the activity of the general transcription machinery are involved in the calcium sensitivity of yeast cells. Most of these mutants show elevated intracellular calcium contents in response to calcium stress. The calcium sensitivity of 106 mutants can be completely suppressed by 10mM Mg2+, 56 of which can also be suppressed by the inhibitor of calcineurin, cyclosporine A. Therefore, the calcium sensitivity of nearly a half of these 120 mutations is at least partially due to the activation of calcineurin and can be modulated by magnesium ion.
机译:在这里,我们确定了120个对酿酒酵母中的0.4M钙敏感的基因缺失突变体。这些突变体中有27个属于液泡蛋白分选途径的基因,包括编码ESCRT复合物的7个成分的基因,其中10个编码液泡H + -ATPase的成分和装配因子。调节一般转录机制活性的介体和Paf1复合体均参与酵母细胞对钙的敏感性。这些突变体中的大多数显示出响应于钙胁迫而升高的细胞内钙含量。 106个突变体的钙敏感性可以被10mM Mg2 +完全抑制,其中56个也可以被钙调神经磷酸酶抑制剂环孢素A抑制。因此,这120个突变中近一半的钙敏感性至少部分是由于钙调神经磷酸酶的活化,并且可以被镁离子调节。

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