Yang B, Qi H, Gu Z, Zhang H, Chen W, Chen H, Chen Y Q
State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi, Jiangsu, China.
School of Food Science and Technology, Jiangnan University, Wuxi, Jiangsu, China.
J Appl Microbiol. 2017 Nov;123(5):1263-1273. doi: 10.1111/jam.13570. Epub 2017 Oct 16.
To assess the mechanism for conjugated linoleic acid (CLA) production in Lactobacillus plantarum ZS2058.
CLA has attracted great interests for decades due to its health-associated benefits including anticancer, anti-atherogenic, anti-obesity and modulation of the immune system. A number of microbial CLA producers were widely reported including lactic acid bacteria. Lactobacillus plantarum ZS2058, an isolate from Chinese traditional fermented food, could convert LA to CLA with various intermediates. To characterize the genetic determinants for generating CLA, a cre-lox-based system was utilized to delete the genes encoding myosin cross-reactive antigen (MCRA), short-chain dehydrogenase/oxidoreductase (DH) and acetoacetate decarboxylase (DC) in Lact. plantarum ZS2058, respectively. Neither intermediate was detected in the corresponding gene deletion mutant. Meanwhile all those mutants could recover the ability to convert linoleic acid to CLA when the corresponding gene was completed.
The results indicated that CLA production was a multiple-step reaction catalysed by triple-component linoleate isomerase system encoded by mcra, dh and dc.
Multicomponent linoleic acid isomerase provided important results for illustration unique mechanism for CLA production in Lact. plantarum ZS2058. Lactobacilli with CLA production ability offer novel opportunities for functional food development.
评估植物乳杆菌ZS2058中共轭亚油酸(CLA)的产生机制。
几十年来,CLA因其与健康相关的益处,包括抗癌、抗动脉粥样硬化、抗肥胖和调节免疫系统,而备受关注。包括乳酸菌在内的许多微生物CLA生产者被广泛报道。植物乳杆菌ZS2058是从中国传统发酵食品中分离出来的,它可以将亚油酸转化为CLA,并产生各种中间体。为了表征产生CLA的遗传决定因素,利用基于cre-lox的系统分别删除植物乳杆菌ZS2058中编码肌球蛋白交叉反应抗原(MCRA)、短链脱氢酶/氧化还原酶(DH)和乙酰乙酸脱羧酶(DC)的基因。在相应的基因缺失突变体中均未检测到中间体。同时,当相应基因被补全时,所有这些突变体都能恢复将亚油酸转化为CLA的能力。
结果表明,CLA的产生是由mcra、dh和dc编码的三组分亚油酸异构酶系统催化的多步反应。
多组分亚油酸异构酶为阐明植物乳杆菌ZS2058中CLA产生的独特机制提供了重要结果。具有CLA产生能力的乳酸菌为功能性食品开发提供了新的机会。