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Comparison of L-Threonine Aldolase Variants in the Aldol and Retro-Aldol Reactions

机译:L-苏氨酸醛缩酶变体在醛醇和反醛醇反应中的比较。

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摘要

Most of biochemical and mutagenesis studies performed with L-threonine aldolases were done with respect to natural activity, the cleavage of L-threonine and sometimes L-β-phenylserine. However, the properties of variants and the impact of mutations on the product synthesis are more interesting from an applications point of view. Here we performed site-directed mutagenesis of active site residues of L-threonine aldolase from Aeromonas jandaei to analyze their impact on the retro-aldol activity and on the aldol synthesis of L-β-phenylserine and L-α-alkyl-β-phenylserines. Consequently, reduced retro-aldol activity upon mutation of catalytically important residues led to increased conversions and diastereoselectivities in the synthetic direction. Thus, L-β-phenylserine can be produced with conversions up to 60% and d.e.‘s up to 80% (syn) under kinetic control. Furthermorem, the donor specificity of L-threonine aldolase was increased upon mutation of active site residues, which enlarged the pocket size for an efficient binding and stabilization of donor molecules in the active site. This study broadens the knowledge about L-threonine aldolase catalyzed reactions and improves the synthetic protocols for the biocatalytic asymmetric synthesis of unnatural amino acids.
机译:使用L-苏氨酸醛缩酶进行的大多数生化和诱变研究均涉及自然活性,L-苏氨酸的裂解,有时还涉及L-β-苯基丝氨酸的裂解。然而,从应用的角度来看,变体的性质和突变对产物合成的影响更为有趣。在这里,我们进行了定居诱变从詹氏气单胞菌L-苏氨酸醛缩酶的活性位点残基,以分析它们对L-β-苯基丝氨酸和L-α-烷基-β-苯基丝氨酸的逆醛醇活性和醛醇合成的影响。 。因此,催化重要残基突变后降低的逆醛醇活性导致合成方向上转化率和非对映选择性的增加。因此,在动力学控制下,L-β-苯基丝氨酸的转化率最高可达到60%,d.e。最高可达80%(syn)。此外,L-苏氨酸醛缩酶的供体特异性在活性位点残基突变后增加,这扩大了口袋大小,以有效结合并稳定活性位点中的供体分子。这项研究拓宽了有关L-苏氨酸醛缩酶催化反应的知识,并改进了非天然氨基酸的生物催化不对称合成的合成方案。

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