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首页> 外文期刊>Journal of Molecular Evolution >Verification of a Novel NADH-Binding Motif: Combinatorial Mutagenesis of Three Amino Acids in the Cofactor-Binding Pocket of Corynebacterium 2,5-Diketo-D-Gluconic Acid Reductase
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Verification of a Novel NADH-Binding Motif: Combinatorial Mutagenesis of Three Amino Acids in the Cofactor-Binding Pocket of Corynebacterium 2,5-Diketo-D-Gluconic Acid Reductase

机译:新型NADH结合基元的验证:棒状杆菌2,5-二酮-D-葡萄糖酸还原酶的辅因子结合口袋中的三个氨基酸的组合诱变。

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摘要

A screening method has been developed to support randomized mutagenesis of amino acids in the cofactor-binding pocket of the NADPH-dependent 2,5-diketo-D-gluconic acid (2,5-DKG) reductase. Such an approach could enable the isolation of an enzyme that can better catalyze the reduction of 2,5-DKG to 2-keto-L-gulonic acid (2-KLG) using NADH as a cofactor. 2-KLG is a valuable precursor to ascorbic acid, or vitamin C, and an enzyme with increased activity with NADH may be able to improve two potential vitamin C production processes. Previously we have identified three amino acid residues that can be mutated to improve activity with NADH as a cofactor. As a pilot study to show feasibility, a library was made with these three amino acids randomized, and 300 random colonies were screened for increased NADH activity. The activities of seven mutants with apparent improvements were verified using activity-stained native gels, and sequencing showed that the amino acids obtained were similar to some of those already discovered using rational design. The four most active mutants were purified and kinetically characterized. All of the new mutations resulted in apparent kcat values that were equal to or higher than that of the best mutant obtained through rational design. At saturating levels of cofactor, the best mutant obtained was almost twice as active with NADH as a cofactor as the wild-type enzyme is with NADPH. This screen is a valuable tool for improving 2,5-DKG reductase, and it could easily be modified for improving other aspects of this protein or similar enzymes.
机译:已经开发出一种筛选方法来支持NADPH依赖性2,5-二酮-D-葡萄糖酸(2,5-DKG)还原酶辅因子结合口袋中氨基酸的随机诱变。这种方法可以分离出一种酶,该酶可以使用NADH作为辅因子更好地催化2,5-DKG还原为2-酮-L-古洛糖酸(2-KLG)。 2-KLG是抗坏血酸或维生素C的宝贵前体,而具有NADH活性的酶可能能够改善两种潜在的维生素C生产工艺。以前我们已经鉴定出了三个氨基酸残基,这些残基可以突变以提高NADH作为辅因子的活性。为了证明可行性,进行了初步研究,建立了这三个氨基酸随机分配的文库,并针对300个随机菌落筛选了增加的NADH活性。使用活性染色的天然凝胶验证了七个明显改善的突变体的活性,测序表明所获得的氨基酸与某些已经通过合理设计发现的氨基酸相似。纯化了四个活性最高的突变体并对其进行了动力学表征。所有这些新突变导致的表观kcat值等于或高于通过合理设计获得的最佳突变体的kcat值。在饱和水平的辅因子下,获得的最佳突变体的NADH活性几乎是野生型酶与NADPH的两倍。该筛选是改善2,5-DKG还原酶的有价值的工具,可以很容易地对其进行修饰以改善该蛋白质或类似酶的其他方面。

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  • 来源
    《Journal of Molecular Evolution》 |2002年第6期|623-631|共9页
  • 作者

    Scott Banta; Stephen Anderson;

  • 作者单位

    Department of Chemical and Biochemical Engineering Rutgers The State University of New Jersey Center for Advanced Biotechnology and Medicine 679 Hoes Lane Piscataway NJ 08854 USA;

    Department of Molecular Biology and Biochemistry Rutgers The State University of New Jersey Center for Advanced Biotechnology and Medicine 679 Hoes Lane Piscataway NJ 08854 USA;

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