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由棕色固氮菌的nifB缺失突变体产生的固氮酶脱辅基MoFe蛋白的催化和生物物理性质。

Catalytic and biophysical properties of a nitrogenase Apo-MoFe protein produced by a nifB-deletion mutant of Azotobacter vinelandii.

作者信息

Christiansen J, Goodwin P J, Lanzilotta W N, Seefeldt L C, Dean D R

机构信息

Department of Biochemistry, Fralin Biotechnology Center, Virginia Tech, Blacksburg, Virginia 24061, USA.

出版信息

Biochemistry. 1998 Sep 8;37(36):12611-23. doi: 10.1021/bi981165b.

Abstract

A Zn-immobilized metal-affinity chromatography technique was used to purify a poly-histidine-tagged, FeMo-cofactorless MoFe protein (apo-MoFe protein) from a nifB-deletion mutant of Azotobacter vinelandii. Apo-MoFe protein prepared in this way was obtained in sufficient concentrations for detailed catalytic, kinetic, and spectroscopic analyses. Metal analysis and electron paramagnetic resonance spectroscopy (EPR) were used to show that the apo-MoFe protein does not contain FeMo-cofactor. The EPR of the as-isolated apo-MoFe protein is featureless except for a minor S = 1/2 signal probably arising from the presence of either a damaged P cluster or a P cluster precursor. The apo-MoFe protein has an alpha2beta2 subunit composition and can be activated to 80% of the theoretical MoFe protein value by the addition of isolated FeMo-cofactor. Oxidation of the as-isolated apo-MoFe protein by indigodisulfonate was used to elicit the parallel mode EPR signal indicative of the two-electron oxidized form of the P cluster (P2+). The midpoint potential of the PN/P2+ redox couple for the apo-MoFe protein was shown to be shifted by -63 mV when compared to the same redox couple for the intact MoFe protein. Although the apo-MoFe protein is not able to catalyze the reduction of substrates under turnover conditions, it does support the hydrolysis of MgATP at 60% of the rate supported by the MoFe protein when incubated in the presence of Fe protein. The ability of the apo-MoFe protein to specifically interact with the Fe protein was also shown by stopped-flow techniques and by formation of an apo-MoFe protein-Fe protein complex. Finally, the two-electron oxidized form of the apo-MoFe protein could be reduced to the one-electron oxidized form (P1+) in a reaction that required Fe protein and MgATP. These results are interpreted to indicate that the apo-MoFe protein produced in a nifB-deficient genetic background [corrected] contains intact P clusters and P cluster polypeptide environments. Small changes in the electronic properties of P clusters contained within the apo-MoFe protein are most likely caused by slight perturbations in their polypeptide environments.

摘要

采用锌固定化金属亲和层析技术,从维涅兰德固氮菌的nifB缺失突变体中纯化了一种带有多组氨酸标签、不含铁钼辅因子的钼铁蛋白(脱辅基钼铁蛋白)。以这种方式制备的脱辅基钼铁蛋白获得了足够的浓度,可用于详细的催化、动力学和光谱分析。通过金属分析和电子顺磁共振光谱(EPR)表明脱辅基钼铁蛋白不含铁钼辅因子。刚分离出的脱辅基钼铁蛋白的EPR除了一个可能源于受损P簇或P簇前体存在的微弱S = 1/2信号外没有特征。脱辅基钼铁蛋白具有α2β2亚基组成,通过添加分离的铁钼辅因子可被激活至理论钼铁蛋白值的80%。用靛蓝二磺酸盐氧化刚分离出的脱辅基钼铁蛋白,可引发指示P簇双电子氧化形式(P2+)的平行模式EPR信号。结果表明,与完整钼铁蛋白的相同氧化还原对相比,脱辅基钼铁蛋白的PN/P2+氧化还原对的中点电位偏移了-63 mV。虽然脱辅基钼铁蛋白在周转条件下不能催化底物还原,但在铁蛋白存在下孵育时,它确实能以钼铁蛋白支持速率的60%支持MgATP的水解。停流技术和脱辅基钼铁蛋白-铁蛋白复合物的形成也表明了脱辅基钼铁蛋白与铁蛋白特异性相互作用的能力。最后,在需要铁蛋白和MgATP的反应中,脱辅基钼铁蛋白的双电子氧化形式可被还原为单电子氧化形式(P1+)。这些结果被解释为表明在nifB缺陷遗传背景下产生的脱辅基钼铁蛋白[校正后]包含完整的P簇和P簇多肽环境。脱辅基钼铁蛋白中所含P簇电子性质的微小变化很可能是由其多肽环境中的轻微扰动引起的。

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