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由(-)-表没食子儿茶素代谢细菌对(-)-表儿茶素、(+)-表儿茶素、(-)-儿茶素和(+)-儿茶素的生物转化

Bioconversion of (-)-epicatechin, (+)-epicatechin, (-)-catechin, and (+)-catechin by (-)-epigallocatechin-metabolizing bacteria.

作者信息

Takagaki Akiko, Nanjo Fumio

机构信息

Food Research Laboratories, Mitsui Norin Co., Ltd.

出版信息

Biol Pharm Bull. 2015;38(5):789-94. doi: 10.1248/bpb.b14-00813.

Abstract

Bioconversion of (-)-epicatechin (-EC), (+)-epicatechin (+EC), (-)-catechin (-C), and (+)-catechin (+C) by (-)-epigallocatechin (-EGC)-metabolizing bacteria, Adlercreutzia equolifaciens MT4s-5, Eggerthella lenta JCM 9979, and Flavonifractor plautii MT42, was investigated. A. equolifaciens MT4s-5 could catalyze C ring cleavage to form (2S)-1-(3,4-dihydroxyphenyl)-3-(2,4,6-trihydroxyphenyl)propan-2-ol (1S) from -EC and -C, and (2R)-1-(3,4-dihydroxyphenyl)-3-(2,4,6-trihydroxyphenyl)propan-2-ol (1R) from +C. The C ring cleavage by A. equolifaciens MT4s-5 was accelerated in the presence of hydrogen. E. lenta JCM 9979 also catalyzed C ring cleavage of -EC and +C to produce 1S and 1R, respectively. In the presence of hydrogen or formate, strain JCM 9979 showed not only stimulation of C ring cleavage but also subsequent 4'-dehydroxylation of 1S and 1R to produce (2S)-1-(3-hydroxyphenyl)-3-(2,4,6-trihydroxyphenyl)propan-2-ol (2S) and (2R)-1-(3-hydroxyphenyl)-3-(2,4,6-trihydroxyphenyl)propan-2-ol (2R), respectively. On the other hand, A. equolifaciens MT4s-5 did not show any 4'-dehydroxylation ability even in the presence of hydrogen. F. plautii MT42 could convert 1S, 1R, 2S, and 2R into their corresponding 4-hydroxy-5-hydroxyphenylvaleric acids and 5-hydroxyphenyl-γ-valerolactones simultaneously. Similar bioconversion was observed by F. plautii ATCC 29863 and F. plautii ATCC 49531.

摘要

研究了能够代谢(-)-表没食子儿茶素(-EGC)的细菌——马氏阿德勒克雷伯菌MT4s-5、迟缓埃格特菌JCM 9979和普拉氏黄酮杆菌MT42对(-)-表儿茶素(-EC)、(+)-表儿茶素(+EC)、(-)-儿茶素(-C)和(+)-儿茶素(+C)的生物转化。马氏阿德勒克雷伯菌MT4s-5能够催化C环裂解,从-EC和-C生成(2S)-1-(3,4-二羟基苯基)-3-(2,4,6-三羟基苯基)丙-2-醇(1S),从+C生成(2R)-1-(3,4-二羟基苯基)-3-(2,4,6-三羟基苯基)丙-2-醇(1R)。在氢气存在下,马氏阿德勒克雷伯菌MT4s-5的C环裂解反应加速。迟缓埃格特菌JCM 9979也催化-EC和+C的C环裂解,分别生成1S和1R。在氢气或甲酸盐存在下,菌株JCM 9979不仅C环裂解反应受到促进,而且1S和1R随后还会发生4'-脱羟基反应,分别生成(2S)-1-(3-羟基苯基)-3-(2,4,6-三羟基苯基)丙-2-醇(2S)和(2R)-1-(3-羟基苯基)-3-(2,4,6-三羟基苯基)丙-2-醇(2R)。另一方面,即使在氢气存在下,马氏阿德勒克雷伯菌MT4s-5也没有表现出任何4'-脱羟基能力。普拉氏黄酮杆菌MT42能够同时将1S、1R、2S和2R转化为相应的4-羟基-5-羟基苯基戊酸和5-羟基苯基-γ-戊内酯。普拉氏黄酮杆菌ATCC 29863和普拉氏黄酮杆菌ATCC 49531也观察到了类似的生物转化。

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