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首页> 外文期刊>Proteomics >Comparative proteomic analyses reveal that the regulators of G-protein signaling proteins regulate amino acid metabolism of the rice blast fungus Magnaporthe oryzae
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Comparative proteomic analyses reveal that the regulators of G-protein signaling proteins regulate amino acid metabolism of the rice blast fungus Magnaporthe oryzae

机译:比较蛋白质组学分析表明,G蛋白信号蛋白的调节剂调节稻瘟病菌米格霉菌的氨基酸代谢

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The rice blast fungus Magnaporthe oryzae encodes eight regulators of G-protein (GTP-binding protein) signaling (RGS) proteins MoRgs1–MoRgs8 that orchestrate the growth, asexual/sexual production, appressorium differentiation, and pathogenicity. To address the mechanisms by which MoRgs proteins function, we conducted a 2DE proteome study and identified 82 differentially expressed proteins by comparing five ?Morgs mutants with wild-type Guy11 strain. We found that the abundances of eight amino acid (AA) biosynthesis or degradation associated proteins were markedly altered in five ?Morgs mutants, indicating one of the main collective roles for the MoRgs proteins is to influence AA metabolism. We showed that MoRgs proteins have distinct roles in AA metabolism and nutrient responses from growth assays. In addition, we characterized MoLys20 (Lys is lysine), a homocitrate synthase, whose abundance was significantly decreased in the ?Morgs mutants. The ?Molys20 mutant is auxotrophic for lys and exogenous lys could partially rescue its auxotrophic defects. Deletion of MoLYS20 resulted in defects in conidiation and infection, as well as pathogenicity on rice. Overall, our results indicate that one of the critical roles for MoRgs proteins is to regulate AA metabolism, and that MoLys20 may be directly or indirectly regulated by MoRgs and participated in lys biosynthesis, thereby affecting fungal development and pathogenicity.
机译:稻瘟病菌Magnaporthe oryzae编码八种调节G蛋白(GTP结合蛋白)信号(RGS)信号蛋白MoRgs1-MoRgs8的调节剂,这些蛋白可以协调生长,无性/性生产,生殖器分化和致病性。为了解决MoRgs蛋白质发挥作用的机制,我们进行了2DE蛋白质组研究,通过比较5个带有野生型Guy11菌株的?Morgs突变体,鉴定了82个差异表达的蛋白质。我们发现,八个氨基酸(AA)的生物合成或降解相关蛋白的丰度在五个?Morgs突变体中发生了显着变化,这表明MoRgs蛋白的主要集体作用之一是影响AA代谢。我们显示,MoRgs蛋白在AA代谢和来自生长测定的营养反应中具有独特的作用。此外,我们表征了纯柠檬酸合酶MoLys20(Lys是赖氨酸),其丰度在ΔMorgs突变体中显着降低。 Molys20突变体对lys具有营养缺陷性,而外源性lys可以部分挽救其营养缺陷性缺陷。 MoLYS20的缺失导致分生孢子和感染的缺陷以及对水稻的致病性。总体而言,我们的结果表明,MoRgs蛋白的关键作用之一是调节AA代谢,MoLys20可能直接或间接受MoRgs调节并参与lys的生物合成,从而影响真菌的发育和致病性。

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