首页> 美国卫生研究院文献>Journal of Bacteriology >Note: Modulation of Escherichia coli Adenylyl Cyclase Activity by Catalytic-Site Mutants of Protein IIAGlc of the Phosphoenolpyruvate:Sugar Phosphotransferase System
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Note: Modulation of Escherichia coli Adenylyl Cyclase Activity by Catalytic-Site Mutants of Protein IIAGlc of the Phosphoenolpyruvate:Sugar Phosphotransferase System

机译:注意:磷酸烯醇丙酮酸:糖磷酸转移酶系统IIAGlc蛋白的催化位点突变体对大肠杆菌腺苷酸环化酶活性的调节

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摘要

It is demonstrated here that in Escherichia coli, the phosphorylated form of the glucose-specific phosphocarrier protein IIAGlc of the phosphoenolpyruvate:sugar phosphotransferase system is an activator of adenylyl cyclase and that unphosphorylated IIAGlc has no effect on the basal activity of adenylyl cyclase. To elucidate the specific role of IIAGlc phosphorylation in the regulation of adenylyl cyclase activity, both the phosphorylatable histidine (H90) and the interactive histidine (H75) of IIAGlc were mutated by site-directed mutagenesis to glutamine and glutamate. Wild-type IIAGlc and the H75Q mutant, in which the histidine in position 75 has been replaced by glutamine, were phosphorylated by the phosphohistidine-containing phosphocarrier protein (HPr∼P) and were equally potent activators of adenylyl cyclase. Neither the H90Q nor the H90E mutant of IIAGlc was phosphorylated by HPr∼P, and both failed to activate adenylyl cyclase. Furthermore, replacement of H75 by glutamate inhibited the appearance of a steady-state level of phosphorylation of H90 of this mutant protein by HPr∼P, yet the H75E mutant of IIAGlc was a partial activator of adenylyl cyclase. The H75E H90A double mutant, which cannot be phosphorylated, did not activate adenylyl cyclase. This suggests that the H75E mutant was transiently phosphorylated by HPr∼P but the steady-state level of the phosphorylated form of the mutant protein was decreased due to the repulsive forces of the negatively charged glutamate at position 75 in the catalytic pocket. These results are discussed in the context of the proximity of H75 and H90 in the IIAGlc structure and the disposition of the negative charge in the modeled glutamate mutants.
机译:在此证明,在大肠杆菌中,磷酸烯醇丙酮酸:糖磷酸转移酶系统的葡萄糖特异性磷酸载体蛋白IIA Glc 的磷酸化形式是腺苷酸环化酶的激活剂,而未磷酸化的IIA Glc < / sup>对腺苷酸环化酶的基础活性没有影响。为了阐明IIA Glc 磷酸化在腺苷酸环化酶活性调节中的特定作用,对IIA Glc 的可磷酸化组氨酸(H90)和相互作用的组氨酸(H75)进行了突变通过定点诱变形成谷氨酰胺和谷氨酸。野生型IIA Glc 和H75Q突变体(其中75位的组氨酸已被谷氨酰胺替代)被含磷酸组氨酸的磷酸载体蛋白(HPr〜P)磷酸化,并成为同等有效的激活剂。腺苷酸环化酶。 IIr Glc 的H90Q或H90E突变体都没有被HPr〜P磷酸化,并且都不能激活腺苷酸环化酶。此外,用谷氨酸代替H75抑制了HPr〜P对该突变蛋白H90磷酸化稳态水平的出现,而IIA Glc 的H75E突变体是腺苷酸环化酶的部分活化剂。 。无法磷酸化的H75E H90A双突变体未激活腺苷酸环化酶。这表明H75E突变体被HPr〜P瞬时磷酸化,但是由于催化口袋中第75位带负电荷的谷氨酸的排斥力,突变体蛋白的磷酸化形式的稳态水平降低了。这些结果是在IIA Glc 结构中H75和H90的邻近性以及建模的谷氨酸突变体中负电荷的分布的背景下讨论的。

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