Department of Bioscience and Biotechnology, Konkuk University, Seoul 05029, Republic of Korea.
Brain Korea 21 Center for Bio-Health Industry, Division of Animal, Horticultural, and Food Sciences, Chungbuk National University, Cheongju 28644, Republic of Korea.
Int J Mol Sci. 2024 Sep 20;25(18):10112. doi: 10.3390/ijms251810112.
Branched-chain hydroxy acids (BCHAs) as bioactive metabolites of Lactobacillaceae include 2-hydroxy isovaleric acid (HIVA), 2-hydroxy isocaproic acid (HICA), and 2-hydroxy-3-methyl isovaleric acid (HMVA). Combining targeted and untargeted metabolomics, this study elucidates differences in extracellular BCHA production in , , and alongside comparing comprehensive metabolic changes. Through targeted metabolomics, BCHA production among 38 strains exhibited strain specificity, except for , which showed significantly lower BCHA production. Explaining the lower production in , which lacks the branched-chain amino acid (BCAA)-utilizing pathway, comparison of BCHA production by precursor reaction revealed that the pathway utilizing BCAAs is more dominant than the pathway utilizing pyruvate. Expanding upon the targeted approach, untargeted metabolomics revealed the effects of the reaction compound on other metabolic pathways besides BCHAs. Metabolism alterations induced by BCAA reactions varied among species. Significant differences were observed in glycine, serine, and threonine metabolism, pyruvate metabolism, butanoate metabolism, and galactose metabolism ( < 0.05). These results emphasize the importance of the synergy between fermentation strains and substrates in influencing nutritional components of fermented foods. By uncovering novel aspects of BCAA metabolism pathways, this study could inform the selection of fermentation strains and support the targeted production of BCHAs.
支链羟基酸(BCHA)作为乳杆菌科的生物活性代谢物,包括 2-羟基异戊酸(HIVA)、2-羟基异己酸(HICA)和 2-羟基-3-甲基异戊酸(HMVA)。本研究结合靶向和非靶向代谢组学,阐明了 、 和 中细胞外 BCHA 产生的差异,并比较了全面的代谢变化。通过靶向代谢组学,38 株菌的 BCHA 产生表现出菌株特异性,除了 ,其 BCHA 产生明显较低。解释了在缺乏支链氨基酸(BCAA)利用途径的 中较低的产生,通过前体反应比较 BCHA 产生表明,利用 BCAA 的途径比利用丙酮酸的途径更为优势。在靶向方法的基础上,非靶向代谢组学揭示了反应化合物对 BCHAs 以外的其他代谢途径的影响。BCAA 反应引起的代谢变化在不同物种之间存在差异。在甘氨酸、丝氨酸和苏氨酸代谢、丙酮酸代谢、丁酸盐代谢和半乳糖代谢中观察到显著差异(<0.05)。这些结果强调了发酵菌株和底物之间协同作用对发酵食品营养成分的重要性。通过揭示 BCAA 代谢途径的新方面,本研究可以为发酵菌株的选择提供信息,并支持 BCHA 的靶向生产。