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大肠杆菌中[NiFe]氢化酶的成熟:HypC循环

Maturation of [NiFe]-hydrogenases in Escherichia coli: the HypC cycle.

作者信息

Blokesch Melanie, Böck August

机构信息

Microbiology, Department I Biology, University of Munich, Maria-Ward-Strasse 1a, D-80638 Munich, Germany.

出版信息

J Mol Biol. 2002 Nov 22;324(2):287-96. doi: 10.1016/s0022-2836(02)01070-7.

Abstract

Carbamoyl phosphate (CP) has been implicated as an educt for the synthesis of the CO and CN ligands of the metal centre of [NiFe]-hydrogenases in Escherichia coli, since CP synthetase mutants (carAB) are unable to generate active hydrogenases due to a block in enzyme maturation. Citrulline, when added to the growth medium in high concentrations, compensated for the phenotype of the mutants. It is now shown that overexpression of the argI gene lowered the effective concentration of citrulline, thus proving that the amino acid serves as a source for CP. The DeltaCarAB mutant accumulated a complex consisting of the hydrogenase maturation proteins HypC and HypD. This complex was resolved upon citrulline addition and followed-up by the appearance of a complex between HypC and the precursor of the large subunit of hydrogenase 3, preHycE. In the absence of the hycE gene, the HypC-HypD complex did not disappear upon addition of citrulline but developed into a form migrating slower in a non-denaturing polyacrylamide gel, providing strong evidence for the notion that the HypC-HypD complex is the intermediate in hydrogenase maturation where CP or its products are added to the iron atom of the metal centre. This step precedes nickel insertion, since extracts of carAB cells that had been cultivated in the absence of citrulline are unable to process preHycE after the addition of nickel. Complex formation between HypC and HypD, and between HypC and preHycE display dependence on identical primary structure elements of HypC. On the basis of the results, a cycle of HypC activity is proposed whose function is to transfer the iron atom that has been liganded at the HypC-HypD complex to the precursor of the large hydrogenase subunit.

摘要

氨甲酰磷酸(CP)被认为是大肠杆菌中[NiFe]氢化酶金属中心的CO和CN配体合成的前体,因为CP合成酶突变体(carAB)由于酶成熟受阻而无法产生活性氢化酶。当高浓度的瓜氨酸添加到生长培养基中时,可补偿突变体的表型。现在表明,argI基因的过表达降低了瓜氨酸的有效浓度,从而证明该氨基酸可作为CP的来源。DeltaCarAB突变体积累了一种由氢化酶成熟蛋白HypC和HypD组成的复合物。添加瓜氨酸后,该复合物得以分解,随后HypC与氢化酶3大亚基前体preHycE之间出现了一种复合物。在没有hycE基因的情况下,添加瓜氨酸后HypC-HypD复合物不会消失,而是在非变性聚丙烯酰胺凝胶中形成一种迁移较慢的形式,这有力地证明了HypC-HypD复合物是氢化酶成熟过程中的中间体,在此过程中CP或其产物被添加到金属中心的铁原子上。这一步骤先于镍的插入,因为在没有瓜氨酸的情况下培养的carAB细胞提取物在添加镍后无法处理preHycE。HypC与HypD之间以及HypC与preHycE之间的复合物形成依赖于HypC相同的一级结构元件。基于这些结果,提出了一个HypC活性循环,其功能是将在HypC-HypD复合物上配位的铁原子转移到大氢化酶亚基的前体上。

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