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Structural alteration of cofactor specificity in Corynebacterium 25-diketo-D-gluconic acid reductase

机译:棒状杆菌25-二酮-D-葡萄糖酸还原酶中辅因子特异性的结构改变

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摘要

Corynebacterium 2,5-Diketo-D-gluconic acid reductase (2,5-DKGR) catalyzes the reduction of 2,5-diketo-D-gluconic acid (2,5-DKG) to 2-Keto-L-gulonic acid (2-KLG). 2-KLG is an immediate precursor to L-ascorbic acid (vitamin C), and 2,5-DKGR is, therefore, an important enzyme in a novel industrial method for the production of vitamin C. 2,5-DKGR, as with most other members of the aldo-keto reductase (AKR) superfamily, exhibits a preference for NADPH compared to NADH as a cofactor in the stereo-specific reduction of substrate. The application of 2,5-DKGR in the industrial production of vitamin C would be greatly enhanced if NADH could be efficiently utilized as a cofactor. A mutant form of 2,5-DKGR has previously been identified that exhibits two orders of magnitude higher activity with NADH in comparison to the wild-type enzyme, while retaining a high level of activity with NADPH. We report here an X-ray crystal structure of the holo form of this mutant in complex with NADH cofactor, as well as thermodynamic stability data. By comparing the results to our previously reported X-ray structure of the holo form of wild-type 2,5-DKGR in complex with NADPH, the structural basis of the differential NAD(P)H selectivity of wild-type and mutant 2,5-DKGR enzymes has been identified.
机译:棒杆菌2,5-二酮-D-葡萄糖酸还原酶(2,5-DKGR)催化将2,5-二酮-D-葡萄糖酸(2,5-DKG)还原为2-酮基-L-古洛糖酸( 2-KLG)。 2-KLG是L-抗坏血酸(维生素C)的直接前体,因此2,5-DKGR是生产维生素C的新型工业方法中的重要酶。2,5-DKGR与与NADH作为底物立体特异性还原的辅助因子相比,醛糖酮还原酶(AKR)超家族的大多数其他成员都显示出对NADPH的偏好。如果可以有效利用NADH作为辅因子,则将大大提高2,5-DKGR在维生素C工业生产中的应用。先前已经鉴定出2,5-DKGR的突变形式,与野生型酶相比,其对NADH的活性高出两个数量级,而对NADPH的活性却保持高水平。我们在这里报告此突变体与NADH辅因子复合的完整形式的X射线晶体结构,以及热力学稳定性数据。通过将结果与我们先前报道的与NADPH复合的野生型2,5-DKGR的整体形式的X射线结构,野生型和突变体2的差异NAD(P)H选择性的结构基础进行比较,已经鉴定出5-DKGR酶。

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