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巴氏梭菌固氮酶钼铁蛋白组分的氧化失活

Oxidative inactivation of the molybdenum-iron-protein component of nitrogenase from clostridium pasteurianum.

作者信息

Gomez-Moreno C, Ke B

出版信息

Mol Cell Biochem. 1979 Jul 31;26(2):111-22. doi: 10.1007/BF00232888.

Abstract

The sensitivity of the molybdenum-iron(MoFe)-protein of Clostridium pasteurianum nitrogenase toward oxidation has been studied by determining the enzymatic activity of this component after incubating it anaerobically in ferricyanide solutions of various oxidizing strengths (as measured by their oxidation potentials). It was found that the MoFe-protein remains active at potentials up to +350 mV (vs. standard hydrogen electrode) but becomes readily inactivated at more oxidizing potentials, after a lag period, depending on the potential level and temperature. Oxidative inactivation by ferricyanide results in the release of most of the Mo, Fe and S atoms from the protein which causes the loss of the absorption bands in the visible region. The metals and sulfur could be re-incorporated by incubation in a mixture containing thiol, sulfide, molybdate, and ferric iron. The EPR spectrum of the oxidatively inactivated MoFe-protein showed that both the high- and low-field signals are readily affected. Re-incorporation of the metals and sulfur into the "bleached" protein produced an EPR spectrum similar to that of the air-inactivated protein. Incubation of the Mo-Fe-protein with mersalyl abolished its enzymic activity. The difference spectrum before and after mersalyl treatment resembles that of the soluble spinach ferredoxin.

摘要

通过在不同氧化强度(以氧化电位衡量)的铁氰化物溶液中厌氧孵育巴氏梭菌固氮酶的钼铁(MoFe)蛋白后,测定该组分的酶活性,研究了其对氧化的敏感性。结果发现,MoFe蛋白在高达 +350 mV(相对于标准氢电极)的电位下仍保持活性,但在更氧化的电位下,经过一段滞后时间后会很容易失活,这取决于电位水平和温度。铁氰化物引起的氧化失活导致蛋白质中大部分的钼、铁和硫原子释放,从而导致可见区域吸收带的消失。通过在含有硫醇、硫化物、钼酸盐和铁离子的混合物中孵育,可以使金属和硫重新掺入。氧化失活的MoFe蛋白的电子顺磁共振(EPR)谱表明,高场和低场信号都很容易受到影响。将金属和硫重新掺入“漂白”的蛋白质中,产生了与空气失活蛋白相似的EPR谱。用汞撒利孵育Mo-Fe蛋白会使其酶活性丧失。汞撒利处理前后的差示光谱类似于可溶性菠菜铁氧还蛋白的差示光谱。

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