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首页> 外文期刊>Applied and Environmental Microbiology >Branched-Chain Amino Acid Biosynthesis Is Essential for Optimal Growth of Streptococcus thermophilus in Milk
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Branched-Chain Amino Acid Biosynthesis Is Essential for Optimal Growth of Streptococcus thermophilus in Milk

机译:支链氨基酸生物合成对于牛奶中嗜热链球菌的最佳生长至关重要

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摘要

Lactic acid bacteria are nutritionally demanding bacteria which need, among other things, amino acids for optimal growth. We identified the branched-chain amino acid (BCAA) biosynthesis pathway as an essential pathway for optimal growth of Streptococcus thermophilus in milk. Through random insertional mutagenesis, we isolated and characterized two mutants for which growth in milk is affected as a consequence of ilvB and ilvC gene interruptions. This situation demonstrates that the BCAA biosynthesis pathway is active in S. thermophilus. BCAA biosynthesis is necessary but not sufficient for optimal growth of S. thermophilus and is subject to retro-inhibition processes. The specificity of the BCAA biosynthesis pathway in S. thermophilus lies in the independent transcription of theilvC gene encoding a keto acid reductoisomerase acting on acetolactate at the junction of the BCAA and acetoin biosynthesis pathways. The possible advantages for S. thermophilus of keeping this biosynthesis pathway active could be linked either to adaptation of the organism to milk, which is different than that of other dairy bacteria, or to the role of the pathway in maintaining the internal pH.
机译:乳酸菌是需要营养的细菌,其中除其他外,还需要氨基酸以使其最佳生长。我们将支链氨基酸(BCAA)生物合成途径确定为牛奶中嗜热链球菌最佳生长的必要途径。通过随机插入诱变,我们分离并鉴定了两个突变体,由于ilvB和ilvC基因中断,牛奶中的生长受到影响。这种情况表明,BCAA生物合成途径在嗜热链球菌中具有活性。 BCAA生物合成对于嗜热链球菌的最佳生长是必要的,但还不足以进行逆抑制过程。嗜热链球菌中BCAA生物合成途径的特异性在于,ilvC基因的独立转录,该基因编码酮酸还原异构酶,作用于BCAA与乙酰生物素合成途径的交界处的乙酰乳酸上。嗜热链球菌保持该生物合成途径活跃的可能优势可能与有机体对牛奶的适应(不同于其他乳类细菌的适应性)或途径在维持内部pH方面的作用有关。

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