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辅酶F430作为产甲烷菌中氯化C1烃还原脱卤的可能催化剂。

Coenzyme F430 as a possible catalyst for the reductive dehalogenation of chlorinated C1 hydrocarbons in methanogenic bacteria.

作者信息

Krone U E, Laufer K, Thauer R K, Hogenkamp H P

机构信息

Laboratorium für Mikrobiologie, Fachbereich Biologie, Philipps-Universität, Marburg, FRG.

出版信息

Biochemistry. 1989 Dec 26;28(26):10061-5. doi: 10.1021/bi00452a027.

Abstract

Corrinoids, such as aquocobalamin, methylcobalamin, and (cyanoaquo)cobinamide, catalyze the reductive dehalogenation of CCl4 with titanium(III) citrate as the electron donor [Krone et al. (1989) Biochemistry 28, 4908-4914]. We report here that this reaction is also effectively mediated by the nickel-containing porphinoid, coenzyme F430, found in methanogenic bacteria. Chloroform, methylene chloride, methyl chloride, and methane were detected as intermediates and products. Ethane was formed in trace amounts, and several as yet unidentified nonvolatile compounds were also generated. The rate of dehalogenation decreased in the series of CCl4, CHCl3, and CH2Cl2. With coenzyme F430 as the catalyst, the reduction of CH3Cl to CH4 proceeded more than 50 times faster than with aquocobalamin. Cell suspensions of Methanosarcina barkeri were found to catalyze the reductive dehalogenation of CCl4 with CO as the electron donor (E'0 = -0.524 V). Methylene chloride was the main end product. The kinetics of CHCl3 and CH2Cl2 formation from CCl4 were similar to those with coenzyme F430 or aquocobalamin as catalysts and titanium(III) citrate as the reductant.

摘要

类咕啉,如水钴胺素、甲钴胺素和(氰基水合)钴胺酰胺,以柠檬酸钛(III)作为电子供体催化四氯化碳的还原脱卤反应[克罗内等人(1989年),《生物化学》28卷,4908 - 4914页]。我们在此报告,该反应也能由产甲烷菌中含镍的卟啉类物质辅酶F430有效介导。检测到氯仿、二氯甲烷、氯甲烷和甲烷为中间产物和产物。痕量生成了乙烷,还产生了几种尚未鉴定的非挥发性化合物。脱卤速率在四氯化碳、三氯甲烷和二氯甲烷系列中降低。以辅酶F430作为催化剂时, 氯甲烷还原为甲烷的速度比用水钴胺素时快50多倍。发现巴氏甲烷八叠球菌的细胞悬液以一氧化碳作为电子供体(E'0 = -0.524 V)催化四氯化碳的还原脱卤反应。二氯甲烷是主要终产物。由四氯化碳生成三氯甲烷和二氯甲烷的动力学与以辅酶F430或水钴胺素作为催化剂、柠檬酸钛(III)作为还原剂时相似。

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