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A protein kinase screen of Neurospora crassa mutant strains reveals that the SNF1 protein kinase promotes glycogen synthase phosphorylation

机译:Neurospora crassa突变株的蛋白激酶筛选显示SNF1蛋白激酶促进糖原合酶磷酸化

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Glycogen functions as a carbohydrate reserve in a variety of organisms and its metabolism is highly regulated. The activities of glycogen synthase and glycogen phosphorylase, the rate-limiting enzymes of the synthesis and degradation processes, respectively, are regulated by allosteric modulation and reversible phosphorylation. To identify the protein kinases affecting glycogen metabolism in Neurospora crassa, we performed a screen of 84 serine/threonine kinase knockout strains. We identified multiple kinases that have already been described as controlling glycogen metabolism in different organisms, such as NcSNF1, NcPHO85, NcGSK3, NcPKA, PSK2 homologue and NcATG1. In addition, many hypothetical kinases have been implicated in the control of glycogen metabolism. Two kinases, NcIME-2 and NcNIMA, already functionally characterized but with no functions related to glycogen metabolism regulation, were also identified. Among the kinases identified, it is important to mention the role of NcSNF1. We showed in the present study that this kinase was implicated in glycogen synthase phosphorylation, as demonstrated by the higher levels of glycogen accumulated during growth, along with a higher glycogen synthase (GSN) +/- glucose 6-phosphate activity ratio and a lesser set of phosphorylated GSN isoforms in strain Ncsnf1(KO), when compared with the wild-type strain. The results led us to conclude that, in N. crassa, this kinase promotes phosphorylation of glycogen synthase either directly or indirectly, which is the opposite of what is described for Saccharomyces cerevisiae. The kinases also play a role in gene expression regulation, in that gdn, the gene encoding the debranching enzyme, was down-regulated by the proteins identified in the screen. Some kinases affected growth and development, suggesting a connection linking glycogen metabolism with cell growth and development.
机译:糖原在多种生物中起着碳水化合物储备的作用,其代谢受到高度调节。糖原合酶和糖原磷酸化酶(分别是合成和降解过程的限速酶)的活性受变构调节和可逆磷酸化作用的调节。为了鉴定影响克雷索氏菌中糖原代谢的蛋白激酶,我们进行了84种丝氨酸/苏氨酸激酶敲除菌株的筛选。我们鉴定了多种激酶,它们已被描述为控制不同生物体中的糖原代谢,例如NcSNF1,NcPHO85,NcGSK3,NcPKA,PSK2同源物和NcATG1。另外,许多假设的激酶与糖原代谢的控制有关。还鉴定了两种激酶,NcIME-2和NcNIMA,已在功能上进行了表征,但没有与糖原代谢调节相关的功能。在已鉴定的激酶中,重要的是提及NcSNF1的作用。我们在本研究中表明,该激酶与糖原合酶磷酸化有关,如生长过程中积累的较高糖原水平,较高的糖原合酶(GSN)+/-葡萄糖6-磷酸酶活性比和较低的糖集磷酸酶活性所证明的那样。与野生型菌株相比,菌株Ncsnf1(KO)中磷酸化GSN亚型的变化结果使我们得出结论,在猪笼草中,该激酶直接或间接促进糖原合酶的磷酸化,这与酿酒酵母所描述的相反。激酶还在基因表达调节中起作用,因为编码脱支酶的基因gdn被筛选中鉴定的蛋白质下调。一些激酶影响生长和发育,提示糖原代谢与细胞生长和发育之间存在联系。

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