De Rosa Edith, Checchetto Vanessa, Franchin Cinzia, Bergantino Elisabetta, Berto Paola, Szabò Ildikò, Giacometti Giorgio M, Arrigoni Giorgio, Costantini Paola
Department of Biology University of Padova, Viale G. Colombo 3, 35131 Padova, Italy.
1] Department of Biology University of Padova, Viale G. Colombo 3, 35131 Padova, Italy [2] Department of Biomedical Sciences, University of Padova, Viale G. Colombo 3, 35131 Padova, Italy.
Sci Rep. 2015 Jul 28;5:12424. doi: 10.1038/srep12424.
The cyanobacterium Synechocystis sp. PCC 6803 has a bidirectional [NiFe]-hydrogenase (Hox hydrogenase) which reversibly reduces protons to H2. This enzyme is composed of a hydrogenase domain and a diaphorase moiety, which is distinctly homologous to the NADH input module of mitochondrial respiratory Complex I. Hox hydrogenase physiological function is still unclear, since it is not required for Synechocystis fitness under standard growth conditions. We analyzed the phenotype under prolonged darkness of three Synechocystis knock-out strains, lacking either Hox hydrogenase (ΔHoxE-H) or one of the proteins responsible for the assembly of its NiFe active site (ΔHypA1 and ΔHypB1). We found that Hox hydrogenase is required for Synechocystis growth under this condition, regardless of the functional status of its catalytic site, suggesting an additional role beside hydrogen metabolism. Moreover, quantitative proteomic analyses revealed that the expression levels of several subunits of the respiratory NADPH/plastoquinone oxidoreductase (NDH-1) are reduced when Synechocystis is grown in the dark. Our findings suggest that the Hox hydrogenase could contribute to electron transport regulation when both photosynthetic and respiratory pathways are down-regulated, and provide a possible explanation for the close evolutionary relationship between mitochondrial respiratory Complex I and cyanobacterial [NiFe]-hydrogenases.
集胞藻PCC 6803具有一种双向[NiFe] - 氢化酶(Hox氢化酶),它能将质子可逆地还原为H₂。这种酶由一个氢化酶结构域和一个递氢体部分组成,该递氢体部分与线粒体呼吸复合体I的NADH输入模块明显同源。Hox氢化酶的生理功能仍不清楚,因为在标准生长条件下,集胞藻的生长并不需要它。我们分析了三种集胞藻敲除菌株在长时间黑暗条件下的表型,这些菌株分别缺失Hox氢化酶(ΔHoxE - H)或负责其NiFe活性位点组装的一种蛋白质(ΔHypA1和ΔHypB1)。我们发现,在这种条件下,集胞藻的生长需要Hox氢化酶,无论其催化位点的功能状态如何,这表明除了氢代谢之外,它还有其他作用。此外,定量蛋白质组学分析表明,当集胞藻在黑暗中生长时,呼吸型NADPH / 质体醌氧化还原酶(NDH - 1)的几个亚基的表达水平会降低。我们的研究结果表明,当光合和呼吸途径都下调时,Hox氢化酶可能有助于电子传递调节,并为线粒体呼吸复合体I与蓝藻[NiFe] - 氢化酶之间密切的进化关系提供了一种可能的解释。