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Efficient synthesis of D-branched-chain amino acids and their labeled compounds with stable isotopes using D-amino acid dehydrogenase

机译:使用D-氨基酸脱氢酶有效合成具有稳定同位素的D-支链氨基酸及其标记的化合物

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D-Branched-chain amino acids (D-BCAAs) such as D-leucine, D-isoleucine, and D-valine are known to be peptide antibiotic intermediates and to exhibit a variety of bioactivities. Consequently, much effort is going into achieving simple stereospecific synthesis of D-BCAAs, especially analogs labeled with stable isotopes. Up to now, however, no effective method has been reported. Here, we report the establishment of an efficient system for enantioselective synthesis of D-BCAAs and production of D-BCAAs labeled with stable isotopes. This system is based on two thermostable enzymes: D-amino acid dehydrogenase, catalyzing NADPHdependent enantioselective amination of 2-oxo acids to produce the corresponding D-amino acids, and glucose dehydrogenase, catalyzing NADPH regeneration from NADP~+ and D-glucose. After incubation with the enzymes for 2 h at 65°C and pH 10.5, 2-oxo-4-methylvaleric acid was converted to D-leucine with an excellent yield (>99 %) and optical purity (>99 %). Using this system, we produced five different D-BCAAs labeled with stable isotopes: D-[1-~(13)C,~(15)N]leucine, D-[1-~(13)C]leucine, D-[~(15)N]leucine, D-[~(15)N]isoleucine, and D-[~(15)N]valine. The structure of each labeled D-amino acid was confirmed using time-of-flight mass spectrometry and nuclear magnetic resonance analysis. These analyses confirmed that the developed system was highly useful for production of D-BCAAs labeled with stable isotopes, making this the first reported enzymatic production of D-BCAAs labeled with stable isotopes. Our findings facilitate tracer studies investigating D-BCAAs and their derivatives.
机译:已知D-支链氨基酸(D-BCAA)(例如D-亮氨酸,D-异亮氨酸和D-缬氨酸)是肽抗生素中间体,并且具有多种生物活性。因此,为实现D-BCAA的简单立体有择合成,特别是用稳定同位素标记的类似物,人们付出了很多努力。但是,到目前为止,还没有有效的方法报道。在这里,我们报告建立一个有效的系统,用于D-BCAAs的对映选择性合成和标记有稳定同位素的D-BCAAs的生产。该系统基于两种热稳定酶:D-氨基酸脱氢酶,催化NADPH依赖性的2-氧代酸对映选择性胺化反应,生成相应的D-氨基酸;以及葡萄糖脱氢酶,催化NADPH从NADP〜+和D-葡萄糖再生。与酶在65°C和pH 10.5下温育2小时后,2-氧代-4-甲基戊酸以优异的收率(> 99%)和光学纯度(> 99%)转化为D-亮氨酸。使用该系统,我们产生了五种标记有稳定同位素的D-BCAA:D- [1-〜(13)C,〜(15)N]亮氨酸,D- [1-〜(13)C]亮氨酸,D- [〜(15)N]亮氨酸,D- [〜(15)N]异亮氨酸和D- [〜(15)N]缬氨酸。使用飞行时间质谱法和核磁共振分析确认每个标记的D-氨基酸的结构。这些分析证实,所开发的系统对于用稳定同位素标记的D-BCAA的生产非常有用,这使其成为第一个报道的用稳定同位素标记的D-BCAAs的酶促生产方法。我们的发现有助于对D-BCAA及其衍生物进行示踪剂研究。

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