首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Knockout of the p-Coumarate Decarboxylase Gene from Lactobacillus plantarum Reveals the Existence of Two Other Inducible Enzymatic Activities Involved in Phenolic Acid Metabolism
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Knockout of the p-Coumarate Decarboxylase Gene from Lactobacillus plantarum Reveals the Existence of Two Other Inducible Enzymatic Activities Involved in Phenolic Acid Metabolism

机译:从植物乳杆菌的p-香豆酸酯脱羧酶基因的基因敲除揭示了涉及酚酸代谢的其他两种诱导酶活性的存在。

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摘要

Lactobacillus plantarum NC8 contains a pdc gene coding for p-coumaric acid decarboxylase activity (PDC). A food grade mutant, designated LPD1, in which the chromosomal pdc gene was replaced with the deleted pdc gene copy, was obtained by a two-step homologous recombination process using an unstable replicative vector. The LPD1 mutant strain remained able to weakly metabolize p-coumaric and ferulic acids into vinyl derivatives or into substituted phenyl propionic acids. We have shown that L. plantarum has a second acid phenol decarboxylase enzyme, better induced with ferulic acid than with p-coumaric acid, which also displays inducible acid phenol reductase activity that is mostly active when glucose is added. Those two enzymatic activities are in competition for p-coumaric and ferulic acid degradation, and the ratio of the corresponding derivatives depends on induction conditions. Moreover, PDC appeared to decarboxylate ferulic acid in vitro with a specific activity of about 10 nmol · min−1 · mg−1 in the presence of ammonium sulfate. Finally, PDC activity was shown to confer a selective advantage on LPNC8 grown in acidic media supplemented with p-coumaric acid, compared to the LPD1 mutant devoid of PDC activity.
机译:植物乳杆菌NC8包含编码p-香豆酸脱羧酶活性(PDC)的pdc基因。使用不稳定的复制载体,通过两步同源重组过程获得了食品级突变体,命名为LPD1,其中染色体pdc基因被缺失的pdc基因拷贝代替。 LPD1突变株仍然能够弱代谢对香豆酸和阿魏酸成乙烯基衍生物或取代的苯基丙酸。我们已经显示,植物乳杆菌具有第二种酸酚脱羧酶,与对香豆酸相比,阿魏酸能更好地诱导该酶,后者还显示出可诱导的酸酚还原酶活性,该活性在添加葡萄糖时最活跃。这两种酶活性竞争对-香豆酸和阿魏酸的降解,并且相应衍生物的比例取决于诱导条件。此外,在硫酸铵存在下,PDC似乎在体外使阿魏酸脱羧,比活度约为10 nmol·min -1 ·mg -1 。最后,与缺乏PDC活性的LPD1突变体相比,PDC活性对在补充了对香豆酸的酸性培养基中生长的LPNC8具有选择优势。

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