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首页> 外文期刊>The Biochemical Journal >Rational engineering of a malate dehydrogenase for microbial production of 2,4-dihydroxybutyric acid via homoserine pathway
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Rational engineering of a malate dehydrogenase for microbial production of 2,4-dihydroxybutyric acid via homoserine pathway

机译:通过HomoSerine途径进行2,4-二羟基丁酸微生物脱氢酶的合理工程

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A synthetic pathway for the production of 2,4-dihydroxybutyric acid from homoserine (HMS), composed of two consecutive enzymatic reaction steps has been recently reported. An important step in this pathway consists in the reduction in 2-keto-4-hydroxybutyrate (OHB) into (l)-dihydroxybutyrate (DHB), by an enzyme with OHB reductase activity. In the present study, we used a rational approach to engineer an OHB reductase by using the cytosolic (l)-malate dehydrogenase from Escherichia coli (Ec-Mdh) as the template enzyme. Structural analysis of (l)-malate dehydrogenase and (l)-lactate dehydrogenase enzymes acting on sterically cognate substrates revealed key residues in the substrate and co-substrate-binding sites responsible for substrate discrimination. Accordingly, amino acid changes were introduced in a stepwise manner into these regions of the protein. This rational engineering led to the production of an Ec-Mdh-5E variant (I12V/R81A/M85E/G179D/D86S) with a turnover number ( k _(cat)) on OHB that was increased by more than 2000-fold (from 0.03 up to 65.0?s~(?1)), which turned out to be 7-fold higher than that on its natural substrate oxaloacetate. Further kinetic analysis revealed the engineered enzyme to possess comparable catalytic efficiencies ( k _(cat)/ K _(m)) between natural and synthetic OHB substrates (84 and 31?s~(?1)?mM~(?1), respectively). Shake-flask cultivation of a HMS-overproducing E. coli strain expressing this improved OHB reductase together with a transaminase encoded by aspC able to convert HMS to OHB resulted in 89% increased DHB production as compared with our previous report using a E. coli host strain expressing an OHB reductase derived from the lactate dehydrogenase A of Lactococcus lactis .
机译:最近报道了由同种静脉(HMS)产生2,4-二羟基丁酸的合成途径,由两种连续的酶反应步骤组成。该途径中的一个重要步骤包括通过具有OHB还原酶活性的酶的2-酮-4-羟基丁酸酯(OHB)中的2-酮-4-羟基丁酸盐(OHB)中的酶。在本研究中,我们利用来自大肠杆菌(EC-MDH)的细胞溶胶(L)-Malate脱氢酶作为模板酶来工程师使用合理方法来工程。 (L) - 甲酸脱氢酶和(L) - 乳酸脱氢酶作用的结构分析,作用于类同源底物的脱氢酶揭示了基材的关键残留物和负责基板辨别的共衬底结合位点。因此,以逐步的方式引入氨基酸变化进入蛋白质的这些区域。该合理的工程导致了EC-MDH-5E变体(I12V / R81A / M85E / G179D / G179D / G179D / G179D / D86S)的生产,其OHB上的营业额数(K _(CAT))增加超过2000倍(来自0.03至65.0?S〜(α1)),结果高于其原草酸盐的7倍。进一步的动力学分析揭示了天然和合成OHB基材(84和31≤S〜(α1)之间具有可比催化效率(K _(猫)/ k(m))的可比催化效率(k _(猫)/ k _(m))。分别)。表达该改善的OHB还原酶的HMS过量的大肠杆菌菌株的摇瓶与能够将HMS转化为OHB的转氨酶,导致DHB生产增加了89%,与我们之前的Coli主机相比,DHB生产增加了89%表达OHB还原酶的菌株衍生自乳酸乳乳乳乳乳乳乳乳乳乳乳糖乳糖酶A。

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