首页> 外文期刊>Applied Microbiology >HupO, a Novel Regulator Involved in Thiosulfate-Responsive Control of HupSL [NiFe]-Hydrogenase Synthesis in Thiocapsa roseopersicina
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HupO, a Novel Regulator Involved in Thiosulfate-Responsive Control of HupSL [NiFe]-Hydrogenase Synthesis in Thiocapsa roseopersicina

机译:HupO,一种新型调节剂,参与硫代硫糖衣藻的硫代硫酸盐响应性HupSL [NiFe]-加氢酶合成反应

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[NiFe]-hydrogenases are regulated by various factors to fulfill their physiological functions in bacterial cells. The photosynthetic purple sulfur bacterium Thiocapsa roseopersicina harbors four functional [NiFe]-hydrogenases: HynSL, HupSL, Hox1, and Hox2. Most of these hydrogenases are functionally linked to sulfur metabolism, and thiosulfate has a central role in this organism. The membrane-associated Hup hydrogenases have been shown to play a role in energy conservation through hydrogen recycling. The expression of Hup-type hydrogenases is regulated by H_(2) in Rhodobacter capsulatus and Cupriavidus necator ; however, it has been shown that the corresponding hydrogen-sensing system is nonfunctional in T. roseopersicina and that thiosulfate is a regulating factor of hup expression. Here, we describe the discovery and analysis of mutants of a putative regulator (HupO) of the Hup hydrogenase in T. roseopersicina . HupO appears to mediate the transcriptional repression of Hup enzyme synthesis under low-thiosulfate conditions. We also demonstrate that the presence of the Hox1 hydrogenase strongly influences Hup enzyme synthesis in that hup expression was decreased significantly in the hox1 mutant. This reduction in Hup synthesis could be reversed by mutation of hupO , which resulted in strongly elevated hup expression, as well as Hup protein levels, and concomitant in vivo hydrogen uptake activity in the hox1 mutant. However, this regulatory control was observed only at low thiosulfate concentrations. Additionally, weak hydrogen-dependent hup expression was shown in the hupO mutant strain lacking the Hox1 hydrogenase. HupO-mediated Hup regulation therefore appears to link thiosulfate metabolism and the hydrogenase network in T. roseopersicina .
机译:[NiFe]-加氢酶受多种因素调节,以在细菌细胞中发挥其生理功能。光合紫色硫细菌Thiocapsa roseopersicina带有四种功能性[NiFe]氢酶:HynSL,HupSL,Hox1和Hox2。这些氢化酶大多数都与硫的代谢功能相关,硫代硫酸盐在该生物中具有重要作用。膜相关的Hup氢酶已被证明在通过氢循环进行的节能中发挥作用。 Hup型氢化酶的表达受荚膜红球菌和铜杯菌中H_(2)的调控。然而,已经证明相应的氢感测系统在玫瑰紫锥菊中是无功能的,并且硫代硫酸盐是hup表达的调节因子。在这里,我们描述了发现和分析的突变体的假定的调节剂(HupO)的T. roseopersicina Hup加氢酶。 HupO似乎在低硫代硫酸盐条件下介导Hup酶合成的转录抑制。我们还证明了Hox1氢化酶的存在强烈影响Hup酶的合成,因为hox1突变体中的hup表达明显降低。 Hup合成的这种减少可以通过hupO的突变来逆转,这会导致hup表达以及Hup蛋白水平大大提高,并且在hox1突变体中伴随着体内的氢吸收活性。但是,仅在低硫代硫酸盐浓度下才能观察到这种调节控制。此外,在缺少Hox1氢化酶的hupO突变菌株中显示了弱的氢依赖性hup表达。因此,HupO介导的Hup调控似乎将硫代硫酸盐代谢与玫瑰紫锥菊中的氢化酶网络联系起来。

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