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Structural Insight into Substrate Differentiation of the Sugar-metabolizing Enzyme Galactitol Dehydrogenase from Rhodobacter sphaeroides D*

机译:从球形红球菌D *糖代谢酶半乳糖醇脱氢酶的底物分化的结构洞察。

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摘要

Galactitol 2-dehydrogenase (GatDH) belongs to the protein superfamily of short-chain dehydrogenases. As an enzyme capable of the stereo- and regioselective modification of carbohydrates, it exhibits a high potential for application in biotechnology as a biocatalyst. We have determined the crystal structure of the binary form of GatDH in complex with its cofactor NAD(H) and of the ternary form in complex with NAD(H) and three different substrates. The active form of GatDH constitutes a homo-tetramer with two magnesium-ion binding sites each formed by two opposing C termini. The catalytic tetrad is formed by Asn116, Ser144, Tyr159, and Lys163. GatDH structurally aligns well with related members of the short-chain dehydrogenase family. The substrate binding pocket can be divided into two parts of different size and polarity. In the smaller part, the side chains of amino acids Ser144, Ser146, and Asn151 are important determinants for the binding specificity and the orientation of (pro-) chiral compounds. The larger part of the pocket is elongated and flanked by polar and non-polar residues, enabling a rather broad substrate spectrum. The presented structures provide valuable information for a rational design of this enzyme to improve its stability against pH, temperature, or solvent concentration and to optimize product yield in bioreactors.
机译:半乳糖2-脱氢酶(GatDH)属于短链脱氢酶的蛋白质超家族。作为一种能够对碳水化合物进行立体和区域选择性修饰的酶,它在生物技术中作为生物催化剂具有很高的应用潜力。我们已经确定了与辅助因子NAD(H)复合的GatDH二元形式的晶体结构以及与NAD(H)和三种不同底物复合的三元形式的晶体结构。 GatDH的活性形式构成具有两个镁离子结合位点的均四聚体,每个结合位点由两个相对的C末端形成。催化四元体由Asn116,Ser144,Tyr159和Lys163形成。 GatDH在结构上与短链脱氢酶家族的相关成员很好地匹配。基板装订袋可分为大小和极性不同的两个部分。在较小的部分,Ser144,Ser146和Asn151氨基酸的侧链是(原)手性化合物结合特异性和方向的重要决定因素。口袋的较大部分被拉长并在侧面带有极性和非极性残留物,从而可实现较宽的底物光谱。提出的结构为该酶的合理设计提供了有价值的信息,以改善其对pH,温度或溶剂浓度的稳定性,并优化生物反应器中的产物收率。

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