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Kinetic and spectroscopic studies on a superoxide dismutase from Propionibacterium shermanii that is active with iron or manganese: pH-dependence.

机译:对铁或锰具有活性的谢尔曼丙酸杆菌超氧化物歧化酶的动力学和光谱研究:pH依赖性。

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摘要

Kinetic studies were performed on the superoxide dismutases isolated from the anaerobic bacterium Propionibacterium shermanii as active enzymes with either iron or manganese, which were naturally incorporated into the same molecule depending on the metal supply. Both the Fe- and Mn- forms showed decreasing activity with increasing pH. This suggests the protonation of some groups near the metal, possibly a metal-bound water molecule. Thus the kinetic behaviour of this superoxide dismutase is much more dependent on the protein structure than on the metal incorporated into the active site. The secondary structures of both forms were not influenced by variations in pH, whereas the EPR spectra of the Fe-superoxide dismutase changed as a function of pH. The EPR spectra apparently consist of two overlapping species. Steady-state experiments proved that all iron-containing species show catalytic activity, but the species predominating in the alkaline pH range displays a lower reaction rate. The Michaelis constant and maximal turnover number for the Fe-superoxide dismutase were determined polarographically as Km = 0.54 mmol/l and Vmax. = 2000 mol.s-1 at pH 9.5. These data indicate that, in anaerobic bacteria under physiological conditions, the superoxide dismutase is not saturable with O2-. and the catalytic activity is similar to that of metal-specific Fe- or Mn-superoxide dismutases from aerobic organisms.
机译:对从厌氧细菌谢氏丙酸杆菌中分离的超氧化物歧化酶进行了动力学研究,以铁或锰作为活性酶,根据金属的供应情况,它们自然地掺入同一分子中。铁和锰的形式都显示出随着pH值的增加而降低的活性。这表明金属附近某些基团的质子化,可能是与金属结合的水分子。因此,这种超氧化物歧化酶的动力学行为比依赖于掺入活性位点的金属更依赖于蛋白质结构。两种形式的二级结构都不受pH值变化的影响,而铁超氧化物歧化酶的EPR谱随pH的变化而变化。 EPR谱显然由两个重叠的物种组成。稳态实验证明,所有含铁物质均具有催化活性,但在碱性pH范围内占优势的物质显示出较低的反应速率。用极谱法测定铁超氧化物歧化酶的米氏常数和最大周转数为Km = 0.54 mmol / l和Vmax。在pH 9.5下= 2000mol.s-1。这些数据表明,在生理条件下的厌氧细菌中,超氧化物歧化酶不能被O2-饱和。催化活性类似于需氧生物的金属特异性Fe或Mn超氧化物歧化酶。

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