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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Characterization of a Novel Methylaspartate Ammonia Lyase from E. coil O157:H7 for Efficient Asymmetric Synthesis of Unnatural Amino Acids
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Characterization of a Novel Methylaspartate Ammonia Lyase from E. coil O157:H7 for Efficient Asymmetric Synthesis of Unnatural Amino Acids

机译:从大肠圈O157:H7的新型甲基己二酸氨裂解酶的表征用于高效不对称合成非自然氨基酸

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The asymmetric addition of ammonia to unsaturated acids using engineered methylaspartate ammonia lyase (MAL) is a particularly attractive and atom-economic method for the synthesis of unnatural amino acids. However, owing to insufficient enzyme gene mining of MALs, the catalytic performances of MALs have only been characterized in a few organisms. Herein, we describe a novel MAL from Escherichia coli (E. coli) O157:H7, whose gene was derived from a genome mining strategy. The enzyme (designated as El-MAL) has-been successfully expressed in E. coli BL21 (DE3) and isolated and purified to homogeneity by using 6 x polyhistidine tag. El-MAL existed as a dimer in solution, consisting of two identical subunits (ca. 45 kDa). Enzymatic properties indicated that the enzyme performed maximum activity in the presence of Mg2+ at pH 8.5 and 25 degrees C. El-MAL accepted fumarate, mesaconate, maleate, citraconic acid, and itaconic acid as substrates in the amination reaction. To the best of our knowledge, such catalytic activity toward citraconic acid and itaconic acid has not been reported previously. Therefore, this novel MAL displayed with high stereoselectivity in an asymmetric amination reaction for the synthesis of unnatural amino acids may become a promising biocatalyst in further exploitation.
机译:使用工程化甲基海地氨裂解酶(MAL)对不饱和酸的不对称添加氨是一种特别有吸引力的和原子 - 经济 - 用于合成非天然氨基酸。然而,由于MALS的酶基因开采不足,MAL的催化性能仅在少量生物体中表征。在此,我们描述了来自大肠杆菌(大肠杆菌)O157:H7的新型MAL,其基因来自基因组采矿策略。通过使用6×Polyhistidine标签,在大肠杆菌BL21(DE3)中成功地表达并纯化并纯化并纯化并纯化酶。 EL-MAL作为溶液中的二聚体存在,由两个相同的亚基(约45kDa)组成。酶促性质表明,酶在pH8.5和25℃下的Mg 2 +存在下进行最大活性。El-Mal被接受的富马酸盐,己二酸盐,马来酸酯,柠檬酸和衣康酸作为胺化反应中的底物。据我们所知,尚未报道这种氟康康酸和衣康酸的这种催化活性。因此,在非对称胺化反应中具有高立体化反应的这种新的Mal在非自然氨基酸的合成中展示可能成为进一步剥削的有前途的生物催化剂。

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