Vedha-Peters Kavitha, Gunawardana Manjula, Rozzell J David, Novick Scott J
BioCatalytics, Inc., 129 North Hill Avenue, Suite 103, Pasadena, California 91106, USA.
J Am Chem Soc. 2006 Aug 23;128(33):10923-9. doi: 10.1021/ja0603960.
Using both rational and random mutagenesis, we have created the first known broad substrate range, nicotinamide cofactor dependent, and highly stereoselective d-amino acid dehydrogenase. This new enzyme is capable of producing d-amino acids via the reductive amination of the corresponding 2-keto acid with ammonia. This biocatalyst was the result of three rounds of mutagenesis and screening performed on the enzyme meso-diaminopimelate d-dehydrogenase. The first round targeted the active site of the wild-type enzyme and produced mutants that were no longer strictly dependent on the native substrate. The second and third rounds produced mutants that had an increased substrate range including straight- and branched-aliphatic amino acids and aromatic amino acids. The very high selectivity toward the d-enantiomer (95 to >99% ee) was shown to be preserved even after the addition of the five mutations found in the three rounds of mutagenesis and screening. This new enzyme could complement and improve upon current methods for d-amino acid synthesis.
通过合理诱变和随机诱变,我们创造出了首个已知的具有广泛底物范围、依赖烟酰胺辅因子且具有高度立体选择性的d-氨基酸脱氢酶。这种新酶能够通过相应的2-酮酸与氨的还原胺化反应生成d-氨基酸。这种生物催化剂是对中-二氨基庚二酸d-脱氢酶进行三轮诱变和筛选的结果。第一轮针对野生型酶的活性位点,产生了不再严格依赖天然底物的突变体。第二轮和第三轮产生了底物范围扩大的突变体,包括直链和支链脂肪族氨基酸以及芳香族氨基酸。即使在三轮诱变和筛选中发现的五个突变添加之后,对d-对映体极高的选择性(对映体过量值为95%至>99%)仍得以保留。这种新酶可以补充并改进当前的d-氨基酸合成方法。