Maróti Gergely, Fodor Barna D, Rákhely Gábor, Kovács Akos T, Arvani Solmaz, Kovács Kornél L
Institute of Biophysics, Biological Research Center, Hungarian Academy of Sciences, Hungary.
Eur J Biochem. 2003 May;270(10):2218-27. doi: 10.1046/j.1432-1033.2003.03589.x.
There are at least two membrane-bound (HynSL and HupSL) and one soluble (HoxEFUYH) [NiFe] hydrogenases in Thiocapsa roseopersicina BBS, a purple sulfur photosynthetic bacterium. Genes coding for accessory proteins that participate in the biosynthesis and maturation of hydrogenases seem to be scattered along the chromosome. Transposon-based mutagenesis was used to locate the hydrogenase accessory genes. Molecular analysis of strains showing mutant phenotypes led to the identification of hupK (hoxV ), hypC1, hypC2, hypD, hypE, and hynD genes. The roles of hynD, hupK and the two hypC genes were investigated in detail. The putative HynD was found to be a hydrogenase-specific endoprotease type protein, participating in the maturation of the HynSL enzyme. HupK plays an important role in the formation of the functionally active membrane-bound [NiFe] hydrogenases, but not in the biosynthesis of the soluble enzyme. In-frame deletion mutagenesis showed that HypC proteins were not specific for the maturation of either hydrogenase enzyme. The lack of either HypC protein drastically reduced the activity of every hydrogenase. Hence both HypCs might participate in the maturation of [NiFe] hydrogenases. Homologous complementation with the appropriate genes substantiated the physiological roles of the corresponding gene products in the H2 metabolism of T. roseopersicina.
在紫色硫光合细菌玫瑰色嗜硫菌BBS中,至少有两种膜结合型(HynSL和HupSL)和一种可溶性(HoxEFUYH)[NiFe]氢化酶。编码参与氢化酶生物合成和成熟的辅助蛋白的基因似乎分散在染色体上。基于转座子的诱变被用于定位氢化酶辅助基因。对表现出突变表型的菌株进行分子分析,从而鉴定出hupK(hoxV)、hypC1、hypC2、hypD、hypE和hynD基因。详细研究了hynD、hupK和两个hypC基因的作用。发现推定的HynD是一种氢化酶特异性的内切蛋白酶类型蛋白,参与HynSL酶的成熟。HupK在功能活性膜结合型[NiFe]氢化酶的形成中起重要作用,但在可溶性酶的生物合成中不起作用。框内缺失诱变表明,HypC蛋白对任何一种氢化酶的成熟都不具有特异性。缺乏任何一种HypC蛋白都会大幅降低每种氢化酶的活性。因此,两种HypC蛋白可能都参与了[NiFe]氢化酶的成熟。用相应基因进行同源互补证实了相应基因产物在玫瑰色嗜硫菌H2代谢中的生理作用。