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首页> 外文期刊>Applied and Environmental Microbiology >Genetic Characterization of the Major Lactococcal Aromatic Aminotransferase and Its Involvement in Conversion of Amino Acids to Aroma Compounds
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Genetic Characterization of the Major Lactococcal Aromatic Aminotransferase and Its Involvement in Conversion of Amino Acids to Aroma Compounds

机译:主要的乳球菌芳香氨基转移酶的遗传特征及其参与氨基酸向芳香化合物的转化

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In lactococci, transamination is the first step of the enzymatic conversion of aromatic and branched-chain amino acids to aroma compounds. In previous work we purified and biochemically characterized the major aromatic aminotransferase (AraT) of a Lactococcus lactis subsp. cremoris strain. Here we characterized the corresponding gene and evaluated the role of AraT in the biosynthesis of amino acids and in the conversion of amino acids to aroma compounds. Amino acid sequence homologies with other aminotransferases showed that the enzyme belongs to a new subclass of the aminotransferase I subfamily γ; AraT is the best-characterized representative of this new aromatic-amino-acid-specific subclass. We demonstrated that AraT plays a major role in the conversion of aromatic amino acids to aroma compounds, since gene inactivation almost completely prevented the degradation of these amino acids. It is also highly involved in methionine and leucine conversion. AraT also has a major physiological role in the biosynthesis of phenylalanine and tyrosine, since gene inactivation weakly slowed down growth on medium without phenylalanine and highly affected growth on every medium without tyrosine. However, another biosynthesis aromatic aminotransferase is induced in the absence of phenylalanine in the culture medium.
机译:在乳球菌中,转氨作用是将芳香族和支链氨基酸酶促转化为芳香族化合物的第一步。在以前的工作中,我们纯化和生物化学鉴定了乳酸乳球菌亚种的主要芳香氨基转移酶(AraT)。 creemoris株。在这里,我们表征了相应的基因,并评估了AraT在氨基酸生物合成中以及在氨基酸向芳香化合物转化中的作用。与其他氨基转移酶的氨基酸序列同源性表明,该酶属于氨基转移酶I亚家族γ的新亚类; AraT是这种新的特定于芳族氨基酸的亚类的最佳表征代表。我们证明了AraT在芳香族氨基酸向芳香族化合物的转化中起主要作用,因为基因失活几乎完全阻止了这些氨基酸的降解。它还高度参与蛋氨酸和亮氨酸的转化。 AraT在苯丙氨酸和酪氨酸的生物合成中也具有重要的生理作用,因为基因失活弱化了不含苯丙氨酸的培养基的生长速度,并严重影响了不含酪氨酸的每种培养基的生长。然而,在培养基中不存在苯丙氨酸的情况下,诱导了另一种生物合成芳香族氨基转移酶。

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