首页> 外文期刊>Applied and Environmental Microbiology >Expression in Escherichia coli of Native and Chimeric Phenolic Acid Decarboxylases with Modified Enzymatic Activities and Method for Screening Recombinant E. coli Strains Expressing These Enzymes
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Expression in Escherichia coli of Native and Chimeric Phenolic Acid Decarboxylases with Modified Enzymatic Activities and Method for Screening Recombinant E. coli Strains Expressing These Enzymes

机译:具有修饰的酶活性的天然和嵌合酚酸脱羧酶在大肠杆菌中的表达及筛选表达这些酶的重组大肠杆菌的方法

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Four bacterial phenolic acid decarboxylases (PAD) fromLactobacillus plantarum, Pediococcus pentosaceus, Bacillus subtilis, and Bacillus pumilus were expressed in Escherichia coli, and their activities on p-coumaric, ferulic, and caffeic acids were compared. Although these four enzymes displayed 61% amino acid sequence identity, they exhibit different activities for ferulic and caffeic acid metabolism. To elucidate the domain(s) that determines these differences, chimeric PAD proteins were constructed and expressed in E. coli by exchanging their individual carboxy-terminal portions. Analysis of the chimeric enzyme activities suggests that the C-terminal region may be involved in determining PAD substrate specificity and catalytic capacity. In order to test phenolic acid toxicity, the levels of growth of recombinant E. colidisplaying and not displaying PAD activity were compared on medium supplemented with different concentrations of phenolic acids and with differing pHs. Though these acids already have a slight inhibitory effect on E. coli, vinyl phenol derivatives, created during decarboxylation of phenolic acids, were much more inhibitory to theE. coli control strain. To take advantage of this property, a solid medium with the appropriate pH and phenolic acid concentration was developed; in this medium the recombinant E. colistrains expressing PAD activity form colonies approximately five times smaller than those formed by strains devoid of PAD activity.
机译:在大肠杆菌中表达了来自植物乳杆菌,戊糖小球菌,枯草芽孢杆菌和短小芽孢杆菌的四种细菌酚酸脱羧酶(PAD),并比较了它们对对香豆酸,阿魏酸和咖啡酸的活性。尽管这四种酶显示出61%的氨基酸序列同一性,但它们在阿魏酸和咖啡酸代谢中表现出不同的活性。为了阐明决定这些差异的结构域,通过交换它们各自的羧基末端部分来构建嵌合PAD蛋白并在大肠杆菌中表达。嵌合酶活性的分析表明,C-末端区域可能参与确定PAD底物特异性和催化能力。为了测试酚酸毒性,在补充了不同浓度酚酸和不同pH的培养基上比较了显示和不显示PAD活性的重组大肠杆菌的生长水平。尽管这些酸已经对大肠杆菌产生了轻微的抑制作用,但是在酚酸脱羧过程中产生的乙烯基苯酚衍生物对大肠杆菌的抑制作用要强得多。大肠杆菌对照菌株。为了利用此特性,开发了具有适当pH和酚酸浓度的固体介质;在这种培养基中,表达PAD活性的重组大肠杆菌形成的菌落比没有PAD活性的菌株形成的菌落小约五倍。

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