首页> 美国卫生研究院文献>Journal of Bacteriology >Gene Products of the hupGHIJ Operon Are Involved in Maturation of the Iron-Sulfur Subunit of the NiFe Hydrogenase from Rhizobium leguminosarum bv. viciae
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Gene Products of the hupGHIJ Operon Are Involved in Maturation of the Iron-Sulfur Subunit of the NiFe Hydrogenase from Rhizobium leguminosarum bv. viciae

机译:hupGHIJ操纵子的基因产物涉及豆根瘤菌bv的NiFe氢化酶的铁硫亚基的成熟。蚕豆

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摘要

In the present study, we investigate the functions of the hupGHIJ operon in the synthesis of an active [NiFe] hydrogenase in the legume endosymbiont Rhizobium leguminosarum bv. viciae. These genes are clustered with 14 other genes including the hydrogenase structural genes hupSL. A set of isogenic mutants with in-frame deletions (ΔhupG, ΔhupH, ΔhupI, and ΔhupJ) was generated and tested for hydrogenase activity in cultures grown at different oxygen concentrations (0.2 to 2.0%) and in symbiosis with peas. In free-living cultures, deletions in these genes severely reduced hydrogenase activity. The ΔhupH mutant was totally devoid of hydrogenase activity at any of the O2 concentration tested, whereas the requirement of hupGIJ for hydrogenase activity varied with the O2 concentration, being more crucial at higher pO2. Pea bacteroids from the mutant strains affected in hupH, hupI, and hupJ exhibited reduced (20 to 50%) rates of hydrogenase activity compared to the wild type, whereas rates were not affected in the ΔhupG mutant. Immunoblot experiments with HupL- and HupS-specific antisera showed that free-living cultures from ΔhupH, ΔhupI, and ΔhupJ mutants synthesized a fully processed mature HupL protein and accumulated an unprocessed form of HupS (pre-HupS). Both the mature HupL and the pre-HupS forms were located in the cytoplasmic fraction of cultures from the ΔhupH mutant. Affinity chromatography experiments revealed that cytoplasmic pre-HupS binds to the HupH protein before the pre-HupS-HupL complex is formed. From these results we propose that hupGHIJ gene products are involved in the maturation of the HupS hydrogenase subunit.
机译:在本研究中,我们调查了hupGHIJ操纵子在豆科植物内共生菌根瘤菌bv中合成活性[NiFe]氢化酶的功能。蚕豆这些基因与包括氢化酶结构基因hupSL在内的其他14个基因聚集在一起。生成了一组具有读框内缺失的等基因突变体(ΔhupG,ΔhupH,ΔhupI和ΔhupJ),并测试了在不同氧气浓度(0.2%至2.0%)下培养并与豌豆共生的培养物中的氢化酶活性。在自由生活的文化中,这些基因的缺失严重降低了氢化酶的活性。在任何测试的O2浓度下,ΔhupH突变体都完全没有氢化酶活性,而hupGIJ对氢化酶活性的要求随O2浓度的变化而变化,在更高的pO2下更为关键。与野生型相比,受到hupH,hupI和hupJ影响的突变菌株的豌豆类细菌显示出降低的(20%至50%)的氢化酶活性速率,而在ΔhupG突变体中,速率不受影响。 HupL和HupS特异性抗血清的免疫印迹实验表明,来自ΔhupH,ΔhupI和ΔhupJ突变体的自由活动培养物合成了完全加工的成熟HupL蛋白,并积累了未经加工的HupS形式(pre-HupS)。成熟的HupL和pre-HupS形式均位于ΔhupH突变体培养物的细胞质部分中。亲和色谱实验表明,胞质pre-HupS在形成pre-HupS-HupL复合体之前先与HupH蛋白结合。根据这些结果,我们建议hupGHIJ基因产物参与HupS氢化酶亚基的成熟。

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