首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Reciprocal Isomerization of Butyrate and Isobutyrate by the Strictly Anaerobic Bacterium Strain WoG13 and Methanogenic Isobutyrate Degradation by a Defined Triculture
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Reciprocal Isomerization of Butyrate and Isobutyrate by the Strictly Anaerobic Bacterium Strain WoG13 and Methanogenic Isobutyrate Degradation by a Defined Triculture

机译:严格厌氧细菌菌株WoG13对丁酸和异丁酸的相互异构化以及确定的三培养对产甲烷的异丁酸的降解

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摘要

Isomerization of butyrate and isobutyrate was investigated with the recently isolated strictly anaerobic bacterium strain WoG13 which ferments glutarate to butyrate, isobutyrate, CO2, and small amounts of acetate. Dense cell suspensions converted butyrate to isobutyrate and isobutyrate to butyrate. 13C-nuclear magnetic resonance experiments proved that this isomerization was accomplished by migration of the carboxyl group to the adjacent carbon atom. In cell extracts, both butyrate and isobutyrate were activated to their coenzyme A (CoA) esters by acyl-CoA:acetate CoA-transferases. The reciprocal rearrangement of butyryl-CoA and isobutyryl-CoA was catalyzed by a butyryl-CoA:isobutyryl-CoA mutase which depended strictly on the presence of coenzyme B12. Isobutyrate was completely degraded via butyrate to acetate and methane by a defined triculture of strain WoG13, Syntrophomonas wolfei, and Methanospirillum hungatei.
机译:用最近分离的严格厌氧细菌菌株WoG13研究了丁酸酯和异丁酸酯的异构化,该菌株将谷氨酸发酵为丁酸酯,异丁酸酯,CO2和少量乙酸。致密细胞悬浮液将丁酸酯转化为异丁酸酯,并将异丁酸酯转化为丁酸酯。 13 C核磁共振实验证明,这种异构化是通过羧基迁移到相邻的碳原子来完成的。在细胞提取物中,丁酸酯和异丁酸酯都被酰基辅酶A:乙酸酯辅酶A转移酶激活为其辅酶A(CoA)酯。丁酰辅酶A:异丁酰辅酶A突变酶催化丁酰辅酶A和异丁酰辅酶A的相互重排,其严格取决于辅酶B12的存在。异丁酸通过丁酸菌株WoG13,Syntrophomonas wolfei和Methanospirillum hungatei的确定的三培养,通过丁酸完全降解为乙酸盐和甲烷。

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