首页> 美国卫生研究院文献>Biochemical Journal >Molybdenum-independent nitrogenases of Azotobacter vinelandii: a functional species of alternative nitrogenase-3 isolated from a molybdenum-tolerant strain contains an iron-molybdenum cofactor.
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Molybdenum-independent nitrogenases of Azotobacter vinelandii: a functional species of alternative nitrogenase-3 isolated from a molybdenum-tolerant strain contains an iron-molybdenum cofactor.

机译:葡萄固氮菌的不依赖于钼的固氮酶:从耐钼的菌株中分离出来的替代固氮酶-3的功能物种含有铁-钼辅助因子。

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摘要

Nitrogenase-3 of Azotobacter vinelandii is synthesized under conditions of molybdenum and vanadium deficiency. The minimal metal requirement for its synthesis, and its metal content, indicated that the only transition metal in nitrogenase-3 was iron [Chisnell, Premakumar and Bishop (1988) J. Bacteriol. 170, 27-33; Pau, Mitchenall and Robson (1989) J. Bacteriol. 171, 124-129]. A new species of nitrogenase-3 has been purified from a strain of A. vinelandii (RP306) lacking structural genes for the Mo- and V-nitrogenases and containing a mutation which enables nitrogenase-3 to be synthesized in the presence of molybdenum. SDS/PAGE showed that component 1 contained a 15 kDa polypeptide which N-terminal amino acid sequence determination showed to be encoded by anfG. This confirms that nitrogenase-3, like V-nitrogenase, comprises three subunits. Preparations of the nitrogenase-3 from strain RP306 contained 24 Fe atoms and 1 Mo atom per molecule. Characterization of the cofactor centre of the enzyme by e.p.r. spectroscopy and an enzymic cofactor assay, together with stimulation of the growth of strain RP306 by Mo, showed that nitrogenase-3 can incorporate the Mo-nitrogenase cofactor (FeMoco) to form a functional enzyme. The specific activities (nmol of product produced/min per mg of protein) determined from activity titration curves were: under N2, NH3 formation 110, with concomitant H2 evolution of 220; under argon, H2 evolution 350; under 10% acetylene (C2H2) in argon, ethylene (C2H4) 58, ethane (C2H6) 26, and concomitant H2 evolution 226. The rate of formation of C2H6 was non-linear, and the C2H6/C2H4 ratio strongly dependent on the ratio of nitrogenase components.
机译:葡萄固氮菌的氮酶3是在钼和钒缺乏的条件下合成的。合成所需的最低金属要求及其金属含量表明,硝化酶3中唯一的过渡金属是铁[Chisnell,Premakumar和Bishop(1988)J. Bacteriol。 170,27-33; Pau,Mitchenall和Robson(1989)J. Bacteriol。 171,124-129]。从缺少Mo-和V-硝化酶的结构基因并且含有能够使Nase-3在钼存在下合成的突变的葡萄曲霉(RP306)菌株中纯化出一种新的Nase-3。 SDS / PAGE显示组分1包含15kDa多肽,其N端氨基酸序列测定显示由anfG编码。这证实了固氮酶-3,如V-固氮酶,包含三个亚基。由RP306菌株制备的固氮酶3每个分子包含24个Fe原子和1个Mo原子。通过e.p.r.表征酶辅因子中心光谱和酶促辅助因子测定,以及Mo刺激RP306菌株的生长,表明Nase-3可以掺入Mo-nitrogenase辅助因子(FeMoco)形成功能性酶。由活性滴定曲线确定的比活度(每摩尔蛋白质产生的nmol产品/分钟蛋白质)为:在N 2下,NH 3形成110,伴随H 2释放220;在氩气下,H 2析出350;在氩气中的乙炔(C2H2)含量低于10%,乙烯(C2H4)58,乙烷(C2H6)26和伴随的H2释放下226. C2H6的生成速率是非线性的,并且C2H6 / C2H4的比例强烈依赖于该比例固氮酶成分。

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