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首页> 外文期刊>Biotechnology Progress >Enantioselective Synthesis of L-Homophenylalanine by Whole Cells of Recombinant Escherichia coli Expressing L-Aminoacylase and N-Acylamino Acid Racemase Genes from Deinococcus radiodurans BCRC12827
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Enantioselective Synthesis of L-Homophenylalanine by Whole Cells of Recombinant Escherichia coli Expressing L-Aminoacylase and N-Acylamino Acid Racemase Genes from Deinococcus radiodurans BCRC12827

机译:重组大肠杆菌表达L-氨基苯基酶和N-酰基氨基酸消旋酶基因的重组大肠杆菌全细胞的对映选择性合成L-高苯丙氨酸

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摘要

L-Homophenylalanine (L-HPA) is a chiral unnatural amino acid used in the synthesis of angiotensin converting enzyme inhibitors and many pharmaceuticals.To develop a bioconversion process with dynamic resolution of N-acylamino acids for the L-HPA production,N-acylamino acid racemase (NAAAR) and L-aminoacylase (LAA) genes were cloned from Deinococcus radiodurans BCRC12827 and expressed in Escherichia coli XLIBlue.The recombinant enzymes were purified by nickel-chelate chromatography,and their biochemical properties were determined.The NAAAR had high racemization activity toward chiral N-acetyl-homopheny-lalanine (NAc-HPA).The LAA exhibited strict L-enantioselection to hydrolyze the NAC-L-HPA.A stirred glass vessel containing transformed E.coli cells expressing D.radiodurans NAAAR and LAA was used for the conversion of NAc-D-HPA to L-HPA.Unbalance activities of LAA and NAAAR were found in E.coli cell coexpressing laa and naaar genes,which resulted in the accumulation of an intermediate,NAc-L-HPA,in the early stage of conversion and a low productivity of 0.83 mmol L-HPA/L h.The results indicated that low activity of LAA present in the biomass is the rate-limiting factor in L-HPA production.In the case of two whole cells with separately expressed enzyme,the enzymatic activities of LAA and NAAAR could be balanced by changing the loading of individual cells.When the activities of two enzymes were fixed at 3600 U/L,99.9% yield of L-HPA could be reached in 1 h,with a productivity of 10 mmol L-HPA/L h.The cells can be reused at least six cycles at a conversion yield of more than 96%.This is the first NAAAR/LAA process using NAc-HPA as substrate and recombinant whole cells containing Deinococcus enzymes as catalysts for the production of L-HPA to be reported.
机译:L-高苯丙氨酸(L-HPA)是一种手性非天然氨基酸,用于合成血管紧张素转化酶抑制剂和许多药物。为动态生产N-酰基氨基酸的生物转化工艺以生产L-HPA,N-酰基氨基酸消旋酶(NAAAR)和L-氨酰酶(LAA)基因从放射性杜鹃球菌BCRC12827中克隆并在大肠埃希菌XLIBlue中表达,重组酶经镍螯合物层析纯化,确定其生化特性。消旋活性高。 LAA表现出严格的L对映体选择性,以水解NAC-L-HPA。一个搅拌的玻璃容器中装有转化的表达D.radiodurans NAAAR和LAA的大肠杆菌细胞在共表达laa和naaar基因的大肠杆菌细胞中发现了LAA和NAAAR的不平衡活性,导致中间产物NA的积累cL-HPA,处于转化的初期,生产率低至0.83 mmol L-HPA / L h。结果表明,生物量中存在的LAA活性低是L-HPA生产的限速因素。如果两个全细胞具有单独表达的酶,则可以通过改变单个细胞的载量来平衡LAA和NAAAR的酶活性。当两种酶的活性固定在3600 U / L时,L-HPA的产率为99.9%可在1小时内达到10 mmol L-HPA / L h的生产率。细胞可重复使用至少六个循环,转化率超过96%。这是使用NAc-HPA的第一个NAAAR / LAA工艺作为底物和重组全细胞,其中含有Deinococcus酶作为生产L-HPA的催化剂。

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