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参与严格厌氧细菌嗜热栖热放线菌C1代谢的钴胺素蛋白的特性分析。

Characterization of a corrinoid protein involved in the C1 metabolism of strict anaerobic bacterium Moorella thermoacetica.

作者信息

Das Amaresh, Fu Zheng-Qing, Tempel Wolfram, Liu Zhi-Jie, Chang Jessie, Chen Lirong, Lee Doowon, Zhou Weihong, Xu Hao, Shaw Neil, Rose John P, Ljungdahl Lars G, Wang Bi-Cheng

机构信息

Department of Biochemistry and Molecular Biology, University of Georgia, Athens, Georgia 30602, USA.

出版信息

Proteins. 2007 Apr 1;67(1):167-76. doi: 10.1002/prot.21094.

Abstract

The strict anaerobic, thermophilic bacterium Moorella thermoacetica metabolizes C1 compounds for example CO(2)/H(2), CO, formate, and methanol into acetate via the Wood/Ljungdahl pathway. Some of the key steps in this pathway include the metabolism of the C1 compounds into the methyl group of methylenetetrahydrofolate (MTHF) and the transfer of the methyl group from MTHF to the methyl group of acetyl-CoA catalyzed by methyltransferase, corrinoid protein and CO dehydrogenase/acetyl CoA synthase. Recently, we reported the crystallization of a 25 kDa methanol-induced corrinoid protein from M. thermoacetica (Zhou et al., Acta Crystallogr F 2005; 61:537-540). In this study we analyzed the crystal structure of the 25 kDa protein and provide genetic and biochemical evidences supporting its role in the methanol metabolism of M. thermoacetia. The 25 kDa protein was encoded by orf1948 of contig 303 in the M. thermoacetica genome. It resembles similarity to MtaC the corrinoid protein of the methanol:CoM methyltransferase system of methane producing archaea. The latter enzyme system also contains two additional enzymes MtaA and MtaB. Homologs of MtaA and MtaB were found to be encoded by orf2632 of contig 303 and orf1949 of contig 309, respectively, in the M. thermoacetica genome. The orf1948 and orf1949 were co-transcribed from a single polycistronic operon. Metal analysis and spectroscopic data confirmed the presence of cobalt and the corrinoid in the purified 25 kDa protein. High resolution X-ray crystal structure of the purified 25 kDa protein revealed corrinoid as methylcobalamin with the imidazole of histidine as the alpha-axial ligand replacing benziimidazole, suggesting base-off configuration for the corrinoid. Methanol significantly activated the expression of the 25 kDa protein. Cyanide and nitrate inhibited methanol metabolism and suppressed the level of the 25 kDa protein. The results suggest a role of the 25 kDa protein in the methanol metabolism of M. thermoacetica.

摘要

严格厌氧的嗜热细菌热醋穆尔氏菌通过伍德/龙格达尔途径将C1化合物(如CO₂/H₂、CO、甲酸和甲醇)代谢为乙酸盐。该途径中的一些关键步骤包括将C1化合物代谢为亚甲基四氢叶酸(MTHF)的甲基,以及由甲基转移酶、类咕啉蛋白和CO脱氢酶/乙酰辅酶A合酶催化将MTHF的甲基转移到乙酰辅酶A的甲基上。最近,我们报道了从热醋穆尔氏菌中结晶出一种25 kDa的甲醇诱导类咕啉蛋白(周等人,《晶体学报F》2005年;61:537 - 540)。在本研究中,我们分析了该25 kDa蛋白的晶体结构,并提供了遗传和生化证据支持其在热醋穆尔氏菌甲醇代谢中的作用。该25 kDa蛋白由热醋穆尔氏菌基因组中重叠群303的orf1948编码。它与产甲烷古菌甲醇:辅酶M甲基转移酶系统的类咕啉蛋白MtaC相似。后一种酶系统还包含另外两种酶MtaA和MtaB。在热醋穆尔氏菌基因组中,分别发现MtaA和MtaB的同源物由重叠群303的orf2632和重叠群309的orf1949编码。orf1948和orf1949从单个多顺反子操纵子共转录。金属分析和光谱数据证实纯化的25 kDa蛋白中存在钴和类咕啉。纯化的25 kDa蛋白的高分辨率X射线晶体结构显示类咕啉为甲基钴胺素,组氨酸的咪唑作为α-轴向配体取代了苯并咪唑,表明类咕啉为碱基脱离构型。甲醇显著激活了25 kDa蛋白的表达。氰化物和硝酸盐抑制甲醇代谢并抑制25 kDa蛋白的水平。结果表明25 kDa蛋白在热醋穆尔氏菌的甲醇代谢中起作用。

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