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首页> 外文期刊>Journal of bacteriology >Uptake hydrogenase activity and ATP formation in Rhizobium leguminosarum bacteroids.
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Uptake hydrogenase activity and ATP formation in Rhizobium leguminosarum bacteroids.

机译:豆科根瘤菌细菌中的氢化酶活性和ATP形成。

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摘要

The role of uptake hydrogenase was studied in Rhizobium leguminosarum bacteroids from the nodules of Pisum sativum L. cv. Homesteader. Uptake hydrogenase activity, measured by the 3H2 uptake method, was dependent on O-consumption and was similar to H2 uptake measured by gas chromatography. Km for O2 of 0.0007 atm (0.0709 kPa) and a Km for H2 of 0.0074 atm (0.7498, kPa) were determined. H2 increased the rate of endogenous respiration by isolates with uptake hydrogenase (Hup+) but had no effect on an isolate lacking uptake hydrogenase (Hup-). A survey of 14 Hup+ isolates indicated a wide range of H2 uptake activities. Four of the isolates tested had activities similar to or higher than those found in two Hup+ Rhizobium japonicum strains. H2 uptake was strongly coupled to ATP formation in only 5 of the 14 isolates. H2 increased the optimal O2 level of C2H2 reduction by 0.01 atm and permitted enhanced C2H2 reduction at O2 levels above the optimum in both a coupled and an uncoupled isolate. At suboptimal O2 concentrations a small enhancement of C2H2 reduction by H2 was seen in two out of three isolates in which H2 oxidation was coupled to ATP formation. Thus, the main function of uptake hydrogenase in R. leguminosarum appears to be in the protection of nitrogenase from O2 damage.
机译:研究了摄取氢化酶在豌豆(Pisum sativum L. cv)根瘤中的根瘤菌类细菌中的作用。宅基地。通过3H2吸收法测量的吸收氢酶活性取决于O的消耗,与通过气相色谱法测量的H2吸收相似。确定O2的Km为0.0007 atm(0.0709 kPa),H2的Km为0.0074 atm(0.7498,kPa)。 H2可以通过摄取氢化酶(Hup +)的分离株提高内源呼吸速率,但对缺乏摄取氢化酶(Hup-)的分离株没有影响。对14个Hup +分离株的调查表明,H2的吸收活动范围广泛。测试的四个分离株的活性与在两个Hup +根瘤菌菌株中发现的相似或更高。在14个分离株中,只有5个分离株中H2的吸收与ATP的形成紧密相关。 H2使C2H2还原的最佳O2水平提高了0.01个大气压,并且在耦合和非耦合分离物中,在O2浓度均高于最佳水平时,可以增强C2H2还原。在次优的O2浓度下,在H2氧化与ATP形成相关的三个分离物中,有两个分离出H2引起的C2H2还原作用有所增强。因此,在豆科根瘤菌中摄取氢化酶的主要功能似乎是在保护固氮酶免受O2损害。

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