Institute of Biophysics, Biological Research Centre, Hungarian Academy of Sciences, Temesvári krt 62, Szeged 6726, Hungary.
Appl Environ Microbiol. 2010 Aug;76(15):5113-23. doi: 10.1128/AEM.00351-10. Epub 2010 Jun 11.
Three functional NiFe hydrogenases were previously characterized in Thiocapsa roseopersicina BBS: two of them are attached to the periplasmic membrane (HynSL and HupSL), and one is localized in the cytoplasm (HoxEFUYH). The ongoing genome sequencing project revealed the presence of genes coding for another soluble Hox-type hydrogenase enzyme (hox2FUYH). Hox2 is a heterotetrameric enzyme; no indication for an additional subunit was found. Detailed comparative in vivo and in vitro activity and expression analyses of HoxEFUYH (Hox1) and the newly discovered Hox2 enzyme were performed. Functional differences between the two soluble NiFe hydrogenases were disclosed. Hox1 seems to be connected to both sulfur metabolism and dark/photofermentative processes. The bidirectional Hox2 hydrogenase was shown to be metabolically active under specific conditions: it can evolve hydrogen in the presence of glucose at low sodium thiosulfate concentration. However, under nitrogen-fixing conditions, it can oxidize H(2) but less than the other hydrogenases in the cell.
先前在玫瑰色硫细菌 BBS 中鉴定出三种功能性 NiFe 氢化酶:两种附着在周质膜上(HynSL 和 HupSL),一种定位于细胞质中(HoxEFUYH)。正在进行的基因组测序项目揭示了存在编码另一种可溶性 Hox 型氢化酶酶(hox2FUYH)的基因。Hox2 是一种异四聚体酶;没有发现额外亚基的迹象。对 HoxEFUYH(Hox1)和新发现的 Hox2 酶进行了详细的体内和体外活性和表达分析。揭示了两种可溶性 NiFe 氢化酶之间的功能差异。Hox1 似乎与硫代谢和暗/光合发酵过程都有关联。双向 Hox2 氢化酶在特定条件下表现出代谢活性:在低浓度硫代硫酸钠存在下,它可以在葡萄糖存在下产生氢气。然而,在固氮条件下,它可以氧化 H2,但不如细胞中的其他氢化酶多。