首页> 外文期刊>Monatshefte fur Chemie >Microbial and Enzymatic Synthesis of Optically Pure D- and L-3-Trimethylsilyl-alanine by Deracemization of D,L-5-Trimethylsilylmethyl-hydantoin
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Microbial and Enzymatic Synthesis of Optically Pure D- and L-3-Trimethylsilyl-alanine by Deracemization of D,L-5-Trimethylsilylmethyl-hydantoin

机译:D,L-5-三甲基甲硅烷基甲基乙内酰脲脱硫的微生物和酶促合成光学纯的D-和L-3-三甲基甲硅烷基丙氨酸

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摘要

The sterospecificities of hydantoinases and N-carbamoyl amino acid amidohydrolases (N-carbamoylases)from different microbial sources were investigated for the stereoselctive syntheses of the unnatural silicon-containing amino acids D-and L-3-trimethylsilyl-alanine (3) from the respective racemic hydantioin D,L-1. In a preparative biotransformation, whole resting cells of Agrobacterium sp. IP I 671, immobilized in a Ca-alginate matrix, were used for the synthesis of amino aicd D-3 in 88% yield and 95% enantiomeric excess. Since the purified D-N-carbamoylase from Agrobacterium sp. IP I 671 was shown to be 100% D-selective, the enantiomeric purity of 95% of D-3 arising from the transformation iwth the immobilized cells must be explained by the participation of a further, L-selective N-carbamoylase or, which is more likely, by racemization of the final hydrolysis product by the action of an amino acid racemase. Isolated hydantoinases from Bacillus thermoglucosidasius, Thermus sp., Arthrobacter aurescens DSM 3745, and Arthrobacter crystallopoietes DSM 20117 turned out to be stereospecific for the conversion of the D-form of hydantoin D, L-1. The enantiomerically pure L-form of 3 was also prepared. It was synthesized from racemic N-carbamoyl amino acid D,L-2by enantiomer-specific hydrolysis of the L-form in presence of L-N-carbamoylase from Arthrobacter aurescens DSM 3747.
机译:研究了来自不同微生物来源的乙内酰脲酶和N-氨基甲酰基氨基酸酰胺水解酶(N-氨基甲酰酶)的立体特异性,分别合成了非天然含硅氨基酸D-和L-3-三甲基甲硅烷基丙氨酸的立体选择性合成。外消旋的hydantioin D,L-1在制备性生物转化中,土壤杆菌属的整个静止细胞。固定在海藻酸钙基质中的IP I 671以88%的收率和95%的对映体过量用于合成氨基丙烯酸D-3。由于从农杆菌属中纯化的D-N-氨基甲酰酶。 IP I 671被证明是100%D选择性的,固定化细胞转化产生的D-3的对映体纯度为95%,这必须通过进一步的L选择性N-氨基甲酰酶的参与来解释,或者通过氨基酸外消旋酶的作用使最终水解产物外消旋化的可能性更大。事实证明,来自热葡糖芽孢杆菌,Thermus sp。,ausrobacter aurescens DSM 3745和Arthrrobacter crystallopoietes DSM 20117的分离的乙内酰脲酶对于乙内酰脲D,L-1的D形式转化具有立体特异性。还制备了对映体纯的L-型3。它是由外消旋的N-氨基甲酰基氨基酸D,L-2通过在金色节杆菌DSM 3747的L-N-氨基甲酰酶存在下L型的对映体特异性水解而合成的。

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