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Genetic and structural comparison of linoleate isomerases from selected food-grade bacteria

机译:食品级细菌中亚油酸酯异构酶的遗传和结构比较

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AbstractAims: To advance the understanding of the molecular mechanisms underlying the capacity of bifidobacteria and lactic bacteria to convert linoleic acid (LA) into conjugated linoleic acid (CLA) by the linoleate isomerase (LI).Methods and Results: The potential LI enzymes of selected Lactobacillus, Bifidobacterium and Leuconostoc strains were compared at the genetic, amino acid sequence and functional levels. Genetic analysis was achieved by insertional mutagenesis and hybridization studies using a Lact. reuteri LI probe. Biotransformation studies monitored by gas chromatography showed that Bif. breve is a major CLA producer after the reference Lact. reuteri strain. The putative Bif. breve LI gene was PCR isolated and sequenced.Conclusions: The putative LI gene identified in this study seems essential for bacterial growth. Comparative studies indicate that the deduced protein is membrane bound and reveal the presence of several highly conserved domains among a wide range of Gram-positive bacteria.Significance and Impact of the Study: Given the multiple health benefits of CLA, the capability of some bacteria to convert LA into CLA is of great relevance. Nevertheless, the yields of CLA remain low, and the regulation of the process is far from being understood. A deeper knowledge of this capacity by the genetic studies is revealing the identity of the LI and will eventually contribute to its control.
机译:摘要目的:促进对双歧杆菌和乳酸菌通过亚油酸异构酶(LI)将亚油酸(LA)转化为共轭亚油酸(CLA)的能力的分子机制的研究。方法和结果:选定的潜在LI酶在基因,氨基酸序列和功能水平上比较了乳杆菌,双歧杆菌和亮粘菌。通过插入诱变和使用Lact的杂交研究完成了遗传分析。罗伊特氏LI探针。气相色谱监测的生物转化研究表明,Bif。 breve是参考Lact之后的主要CLA生产商。罗伊氏菌。假定的Bif。结论:本研究中鉴定的推定的LI基因似乎对细菌的生长至关重要。比较研究表明,推导的蛋白质是膜结合的,揭示了广泛的革兰氏阳性细菌中存在几个高度保守的结构域。研究的意义和影响:考虑到CLA的多种健康益处,某些细菌的能力将洛杉矶转换为CLA具有重大意义。然而,CLA的产率仍然很低,并且对该过程的调节还远未了解。遗传研究对这种能力的更深入了解揭示了LI的身份,并将最终有助于其控制。

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