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NADP+-Preferring d-Lactate Dehydrogenase from Sporolactobacillus inulinus

机译:菊粉中的NADP +-首选d-乳酸脱氢酶

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摘要

Hydroxy acid dehydrogenases, including l- and d-lactate dehydrogenases (L-LDH and D-LDH), are responsible for the stereospecific conversion of 2-keto acids to 2-hydroxyacids and extensively used in a wide range of biotechnological applications. A common feature of LDHs is their high specificity for NAD+ as a cofactor. An LDH that could effectively use NADPH as a coenzyme could be an alternative enzymatic system for regeneration of the oxidized, phosphorylated cofactor. In this study, a d-lactate dehydrogenase from a Sporolactobacillus inulinus strain was found to use both NADH and NADPH with high efficiencies and with a preference for NADPH as its coenzyme, which is different from the coenzyme utilization of all previously reported LDHs. The biochemical properties of the D-LDH enzyme were determined by X-ray crystal structural characterization and in vivo and in vitro enzymatic activity analyses. The residue Asn174 was demonstrated to be critical for NADPH utilization. Characterization of the biochemical properties of this enzyme will contribute to understanding of the catalytic mechanism and provide referential information for shifting the coenzyme utilization specificity of 2-hydroxyacid dehydrogenases.
机译:羟基酸脱氢酶,包括L-和D-乳酸脱氢酶(L-LDH和D-LDH),负责将2-酮酸立体定向转化为2-羟基酸,并广泛用于广泛的生物技术应用中。 LDHs的一个共同特征是它们对NAD +作为辅助因子的高度特异性。可以有效利用NADPH作为辅酶的LDH可能是氧化,磷酸化辅因子再生的替代酶系统。在这项研究中,发现菊粉菌中的d-乳酸脱氢酶高效使用NADH和NADPH,并且优先选择NADPH作为其辅酶,这与以前报道的所有LDH的辅酶利用不同。 D-LDH酶的生化特性通过X射线晶体结构表征以及体内和体外酶活性分析来确定。残留Asn174被证明对NADPH的利用至关重要。此酶的生化特性的表征将有助于理解催化机理,并为改变2-羟酸脱氢酶的辅酶利用特异性提供参考信息。

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