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Protein kinase Sck1 is involved in trehalase activation by glucose and nitrogen source in the fission yeast Schizosaccharomyces pombe

机译:蛋白激酶Sck1涉及裂解酵母Schizosaccharomyces Pombe中的葡萄糖和氮源的海藻酶活化

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Summary: Trehalase activity is markedly enhanced upon addition of glucose and a nitrogen source to cells of the fission yeast Schizosaccharomyces pombe. This increase corresponds to a post-translational activation of the enzyme, which is controlled by cAMP-dependent and cAMP-independent pathways. Recent work has shown that overexpression of SCK1 in Schiz. pombe is able to suppress mutations that result in reduced Pka1 (cAMP-dependent protein kinase A activity, suggesting that Sck1 (suppressor of loss of cAMP-dependent protein kinase) might be a functional analogue of Pka1 in the fission yeast. Here, an analysis of the possible role of Sck1 in the activation of trehalase triggered by glucose and a nitrogen source is reported in cells that were deficient in either Pka1, Sck1 or both protein kinases. The results showed that, except in repressed cells, Sck1 probably mediates a cAMP-independent activation of trehalase following the signal(s) triggered by glucose and the nitrogen source. The absence of functional Sck1 in derepressed cells renders trehalase insensitive to activation by glucose and the nitrogen source even in the presence of Pka1, indicating that the Sck1-dependent, cAMP-independent pathway is the main signalling pathway controlling trehalase activation under derepression conditions. It is proposed that, during the activation of trehalase induced by glucose or a nitrogen source, the cAMP-Pka1 activation pathway previously characterized is to some extent parallel to this newly described one which includes Sck1 as ohosphorylating enzyme. Neither of these two pathways, however, plays a key role in the heat-induced increase in trehalase activity.
机译:发明内容:在加入葡萄糖和氮源到裂变酵母Schizosaccharomyces Pombe的细胞中,对海藻酶活性显着提高。该增加对应于酶的翻译后激活,其由CAMP依赖性和营养型途径控制。最近的工作表明,Schiz的SCK1过度表达。 Pombe能够抑制导致PKA1减少的突变(营养蛋白激酶A活动,表明SCK1(营养依赖性蛋白激酶的抑制)可能是PKA1在裂变酵母中的功能类似物。这里,分析在葡萄糖和氮源触发的细胞中缺乏PKA1,Sck1或蛋白激酶的细胞中,SCK1在激活的可能作用。结果表明,除了压抑的细胞外,SCK1可能介导营地 - 通过葡萄糖和氮源触发的信号依赖性激活海藻糖酶。在体外细胞中没有功能Sck1使得海藻糖酶对葡萄糖和氮源的激活,即使在PKA1的存在下也表明SCK1-依赖性,营养营养途径是控制DERELINGSIAL条件下的海藻酶活化的主要信号通路。建议,在激活o期间由葡萄糖或氮源诱导的F海藻酶,先前表征的CAMP-PKA1活化途径在一定程度上平行于该新描述的,其包括SCK1作为OH磷酸化酶。然而,这两种途径都不在海藻酶活性的热诱导的增加中起关键作用。

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