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Characterizing Lysine Acetylation of Isocitrate Dehydrogenase in Escherichia coli

机译:表征大肠杆菌中异柠檬酸脱氢酶的赖氨酸乙酰化

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摘要

The Escherichia coli isocitrate dehydrogenase (ICDH) is one of the tricarboxylic acid cycle enzymes, playing key roles in energy production and carbon flux regulation. E. coli ICDH was the first bacterial enzyme shown to be regulated by reversible phosphorylation. However, the effect of lysine acetylation on E. coli ICDH, which has no sequence similarity with its counterparts in eukaryotes, is still unclear. Based on previous studies of E. coli acetylome and ICDH crystal structures, eight lysine residues were selected for mutational and kinetic analyses. They were replaced with acetyllysine by the genetic code expansion strategy or substituted with glutamine as a classic approach. Although acetylation decreased the overall ICDH activity, its effects were different site by site. Deacetylation tests demonstrated that the CobB deacetylase could deacetylate ICDH both in vivo and in vitro, but CobB was only specific for lysine residues at the protein surface. On the other hand, ICDH could be acetylated by acetyl-phosphate chemically in vitro. And in vivo acetylation tests indicated that the acetylation level of ICDH was correlated with the amounts of intracellular acetyl-phosphate. This study nicely complements previous proteomic studies to provide direct biochemical evidence for ICDH acetylation.
机译:大肠杆菌异柠檬酸脱氢酶(ICDH)是三羧酸循环酶之一,在能量产生和碳通量调节中起关键作用。大肠杆菌ICDH是第一个显示出可逆磷酸化调控的细菌酶。但是,赖氨酸乙酰化对大肠杆菌ICDH的影响(与真核生物中的对应物没有序列相似性)仍不清楚。根据以前对大肠杆菌乙酰基和ICDH晶体结构的研究,选择了8个赖氨酸残基进行突变和动力学分析。通过遗传密码扩展策略将其替换为乙酰赖氨酸,或将谷氨酰胺替换为经典方法。尽管乙酰化降低了整体ICDH活性,但其作用因部位而异。脱乙酰化试验表明,CobB脱乙酰基酶可以在体内和体外使ICDH脱乙酰,但是CobB仅对蛋白质表面的赖氨酸残基具有特异性。另一方面,ICDH可以在体外通过乙酰磷酸盐化学乙酰化。体内乙酰化试验表明ICDH的乙酰化水平与细胞内乙酰磷酸的含量有关。这项研究很好地补充了以前的蛋白质组学研究,为ICDH乙酰化提供了直接的生化证据。

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