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The role of Hox hydrogenase in the H2 metabolism of Thiocapsa roseopersicina

机译:Hox氢化酶在玫瑰木硫杆菌H2代谢中的作用

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The purple sulfur phototrophic bacterium Thiocapsa roseopersicina BBS synthesizes at least three NiFe hydrogenases (Hox, Hup, Hyn). We characterized the physiological H2 consumption/evolution reactions in mutants having deletions of the structural genes of two hydrogenases in various combinations. This made possible the separation of the functionally distinct roles of the three hydrogenases. Data showed that Hox hydrogenase (unlike the Hup and Hyn hydrogenases) catalyzed the dark fermentative H2 evolution and the light-dependent H2 production in the presence of thiosulfate. Both Hox+ and Hup+ mutants demonstrated light-dependent H2 uptake stimulated by CO2 but only the Hup+ mutant was able to mediate O2-dependent H2 consumption in the dark. The ability of the Hox+ mutant to evolve or consume hydrogen was found to depend on a number of interplaying factors including both growth and reaction conditions (availability of glucose, sulfur compounds, CO2, H2, light). The study of the redox properties of Hox hydrogenase supported the reversibility of its action. Based on the results a scheme is suggested to describe the role of Hox hydrogenase in light-dependent and dark hydrogen metabolism in T. roseopersicina BBS.
机译:紫色硫光养细菌Thiocapsa roseopersicina BBS至少合成三种NiFe氢化酶(Hox,Hup,Hyn)。我们表征了突变体中的生理H2消耗/进化反应,该突变体具有两种组合形式的两种氢化酶结构基因的缺失。这使得分离三种氢化酶的功能上不同的作用成为可能。数据显示,在硫代硫酸盐存在下,Hox加氢酶(不同于Hup和Hyn加氢酶)催化了黑暗发酵H2的演化和光依赖性H2的产生。 Hox +和Hup +突变体均显示受CO2刺激的光依赖性H2吸收,但只有Hup +突变体能够在黑暗中介导O2依赖性H2消耗。发现Hox +突变体释放或消耗氢的能力取决于许多相互作用因素,包括生长和反应条件(葡萄糖,硫化合物,CO2,H2,光的利用率)。 Hox加氢酶氧化还原特性的研究支持其作用的可逆性。根据结果​​,提出了一个方案来描述Hox加氢酶在玫瑰紫花牛BBS的光依赖性和暗氢代谢中的作用。

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