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Diverse allosteric and catalytic functions of tetrameric d-lactate dehydrogenases from three Gram-negative bacteria

机译:来自三种革兰氏阴性细菌的四聚体d-乳酸脱氢酶的多种变构和催化功能

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摘要

NAD-dependent d-lactate dehydrogenases (d-LDHs) reduce pyruvate into d-lactate with oxidation of NADH into NAD+. Although non-allosteric d-LDHs from Lactobacilli have been extensively studied, the catalytic properties of allosteric d-LDHs from Gram-negative bacteria except for Escherichia coli remain unknown. We characterized the catalytic properties of d-LDHs from three Gram-negative bacteria, Fusobacterium nucleatum (FNLDH), Pseudomonas aeruginosa (PALDH), and E. coli (ECLDH) to gain an insight into allosteric mechanism of d-LDHs. While PALDH and ECLDH exhibited narrow substrate specificities toward pyruvate like usual d-LDHs, FNLDH exhibited a broad substrate specificity toward hydrophobic 2-ketoacids such as 2-ketobutyrate and 2-ketovalerate, the former of which gave a 2-fold higher kcat/S0.5 value than pyruvate. Whereas the three enzymes consistently showed hyperbolic shaped pyruvate saturation curves below pH 6.5, FNLDH and ECLDH, and PALDH showed marked positive and negative cooperativity, respectively, in the pyruvate saturation curves above pH 7.5. Oxamate inhibited the catalytic reactions of FNLDH competitively with pyruvate, and the PALDH reaction in a mixed manner at pH 7.0, but markedly enhanced the reactions of the two enzymes at low concentration through canceling of the apparent homotropic cooperativity at pH 8.0, although it constantly inhibited the ECLDH reaction. Fructose 1,6-bisphosphate and certain divalent metal ions such as Mg2+ also markedly enhanced the reactions of FNLDH and PALDH, but none of them enhanced the reaction of ECLDH. Thus, our study demonstrates that bacterial d-LDHs have highly divergent allosteric and catalytic properties.
机译:NAD依赖的d-乳酸脱氢酶(d-LDHs)通过将NADH氧化为NAD + 将丙酮酸还原为d-乳酸。尽管已对乳酸杆菌的非变构d-LDHs进行了广泛研究,但除大肠杆菌外,革兰氏阴性细菌的变构d-LDHs的催化性能仍然未知。我们表征了来自三种革兰氏阴性细菌,核梭状芽胞杆菌(FNLDH),铜绿假单胞菌(PALDH)和大肠杆菌(ECLDH)的d-LDHs的催化特性,以深入了解d-LDHs的变构机理。尽管PALDH和ECLDH像通常的d-LDHs一样对丙酮酸表现出较窄的底物特异性,但FNLDH对疏水性2-酮酸(如2-酮丁酸和2-酮戊酸)表现出较宽的底物特异性,前者的kcat / S0高2倍。 .5值大于丙酮酸。三种酶在pH值低于6.5时始终显示出双曲线形的丙酮酸饱和度曲线,而在pH值高于7.5的丙酮酸饱和度曲线中,FNLDH和ECLDH和PALDH分别显示出明显的正和负协同性。草酸盐在pH值为7.0时竞争性地抑制了FNLDH与丙酮酸的催化反应,并且以混合的方式抑制了PALDH反应,但通过取消在pH 8.0时的明显的同质协同性,显着增强了低浓度时两种酶的反应。 ECLDH反应。 1,6-二磷酸果糖和某些二价金属离子(如Mg 2 + )也显着增强了FNLDH和PALDH的反应,但没有一个增强了ECLDH的反应。因此,我们的研究表明细菌d-LDH具有高度不同的变构和催化特性。

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