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Vanadium Requirements and Uptake Kinetics in the Dinitrogen-Fixing Bacterium Azotobacter vinelandii

机译:固氮双氮细菌酿酒酵母对钒的需求和吸收动力学

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摘要

Vanadium is a cofactor in the alternative V-nitrogenase that is expressed by some N2-fixing bacteria when Mo is not available. We investigated the V requirements, the kinetics of V uptake, and the production of catechol compounds across a range of concentrations of vanadium in diazotrophic cultures of the soil bacterium Azotobacter vinelandii. In strain CA11.70, a mutant that expresses only the V-nitrogenase, V concentrations in the medium between 10−8 and 10−6 M sustain maximum growth rates; they are limiting below this range and toxic above. A. vinelandii excretes in its growth medium micromolar concentrations of the catechol siderophores azotochelin and protochelin, which bind the vanadate oxoanion. The production of catechols increases when V concentrations become toxic. Short-term uptake experiments with the radioactive isotope 49V show that bacteria take up the V-catechol complexes through a regulated transport system(s), which shuts down at high V concentrations. The modulation of the excretion of catechols and of the uptake of the V-catechol complexes allows A. vinelandii to precisely manage its V homeostasis over a range of V concentrations, from limiting to toxic.
机译:钒是替代性V-氮酶中的辅因子,当Mo不能获得时,它会由某些固定N2的细菌表达。我们研究了土壤细菌Azotobacter vinelandii的重氮营养培养物中钒的需求量,V吸收的动力学以及在一系列浓度的钒中邻苯二酚化合物的产生。在CA11.70菌株中,仅表达​​V-硝化酶的突变体,在10 -8 和10 -6 M之间的培养基中的V浓度维持最大的生长速率。他们限制在这个范围以下,有毒超过。葡萄曲霉在其生长培养基中排泄出微摩尔浓度的儿茶酚铁载体偶氮螯合蛋白和原螯合蛋白,它们结合了钒酸根氧阴离子。当V浓度变为有毒时,邻苯二酚的产生增加。放射性同位素 49 V的短期吸收实验表明,细菌通过可调节的传输系统吸收V-邻苯二酚络合物,该系统在高V浓度下会关闭。儿茶酚的排泄和对V-邻苯二酚络合物的吸收的调节使A. vinelandii能够在从限定到有毒的各种V浓度范围内精确控制其V稳态。

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