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L-氨基酸脱氨酶的性质:生物转化反应优化之路。

Properties of l-amino acid deaminase: En route to optimize bioconversion reactions.

机构信息

Dipartimento di Biotecnologie e Scienze della Vita, Università degli Studi dell'Insubria, via J. H. Dunant 3, 21100, Varese, Italy.

Dipartimento di Biotecnologie e Scienze della Vita, Università degli Studi dell'Insubria, via J. H. Dunant 3, 21100, Varese, Italy.

出版信息

Biochimie. 2019 Mar;158:199-207. doi: 10.1016/j.biochi.2019.01.010. Epub 2019 Jan 20.

Abstract

Interest is rising in the agrochemical and pharmaceutical industries concerning the use of enantiomerically pure amino acids. l-Amino acids are easily produced by deracemization of D,L-mixtures or by stereoinversion of d-amino acids, employing the flavoenzyme d-amino acid oxidase. On the other hand, the production of the D-enantiomers is hampered by the lack of a suitable enzyme with reversed stereoselectivity. In recent years, the enzyme l-amino acid deaminase has been proposed as an alternative to l-amino acid oxidase. l-Amino acid deaminase from Proteus myxofaciens (PmaLAAD) is a membrane-bound flavoprotein that catalyzes the deamination of l-amino acids to the corresponding α-keto acids and ammonia without producing hydrogen peroxide since the electrons are transferred from the reduced cofactor to a b-type cytochrome. For this reason, purified PmaLAAD has no significant enzymatic activity; this can be recovered by adding exogenous E. coli membranes. In order to circumvent the use of membranes, we analyzed the ability of PmaLAAD to use alternative electron acceptors, as well as detergents, to reproduce the hydrophobic environment. With phenazine methosulfate (PMS) and anionic detergents, at concentrations lower than the critical micellar concentration, higher enzymatic activity can be reached than with membranes. The effect on stability, protein conformation, oligomeric state and activity of temperature, pH, ionic strength, and detergents was also investigated. By optimizing the reaction conditions (namely, using 0.8 mM PMS and 0.1 mM SDS) the rate of l-leucine bioconversion was improved.

摘要

人们对利用手性纯氨基酸的农用化学品和制药行业越来越感兴趣。L-氨基酸可以通过外消旋 DL 混合物的去消旋作用或使用黄素酶 D-氨基酸氧化酶进行 d-氨基酸的立体反转作用来轻松生产。另一方面,由于缺乏具有相反立体选择性的合适酶,D-对映体的生产受到阻碍。近年来,L-氨基酸脱氨酶已被提议作为 L-氨基酸氧化酶的替代品。来自粘质沙雷氏菌的 L-氨基酸脱氨酶(PmaLAAD)是一种膜结合黄素蛋白,可催化 L-氨基酸脱氨生成相应的α-酮酸和氨,而不会产生过氧化氢,因为电子从还原辅因子转移到 b 型细胞色素。出于这个原因,纯化的 PmaLAAD没有显著的酶活性;通过添加外源性大肠杆菌膜可以恢复这种活性。为了避免使用膜,我们分析了 PmaLAAD 利用替代电子受体以及去污剂来复制疏水环境的能力。在低于临界胶束浓度的浓度下,使用吩嗪甲硫酸盐 (PMS) 和阴离子去污剂可以达到比使用膜更高的酶活性。还研究了温度、pH 值、离子强度和去污剂对稳定性、蛋白质构象、寡聚状态和活性的影响。通过优化反应条件(即使用 0.8mM PMS 和 0.1mM SDS),提高了 L-亮氨酸生物转化的速率。

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