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氯过氧化物酶及其复合物的氧化还原电位测量。

Oxidation-reduction potential measurements on chloroperoxidase and its complexes.

作者信息

Makino R, Chiang R, Hager L P

出版信息

Biochemistry. 1976 Oct 19;15(21):4748-54. doi: 10.1021/bi00666a033.

Abstract

The oxidation-reduction potential of chloroperoxidase, an enzyme which catalyzes peroxidative chlorination, bromination, and iodination reactions, has been investigated. In addition to catalyzing biological halogenation reactions, chloroperoxidase is unusual in that the carbon monoxide complex of ferrous chloroperoxidase shows the typical long wavelength Soret absorption associated with P-450 hemoproteins. The pH dependence of the chloroperoxidase oxidation-reduction potential shows a discontinuity around pH 4.7. Similarly, measurements of the affinity of ferrous chloroperoxidase for carbon monoxide monitored both by spectroscopic and potentiometric titration exhibit a discontinuity in the pH 4.7 region. Oxidation-reduction potential measurements on chloroperoxidase in a CO atmosphere also show a discontinuous pH profile. These results suggest that ferrous chloroperoxidase undergoes reversible modification at low pH and that these changes are reflected in the oxidation-reduction potential. The oxidation-reduction potential of chloroperoxidase at pH 6.9 is - 140 mV, close to that measured for cytochrome P-450cam in the presence of substrate. The oxidation-reduction potential of chloroperoxidase at pH 2.7, the pH optimum for enzymatic chlorination, is +150 mV. The oxidation-reduction potentials of the halide complexes of chloroperoxidase (chloride, bromide, and iodide) are essentially identical with the potential measurements on the native enzyme. These observations suggest that, although halide anions bind to the enzyme, they probably do not bind as an axial ligand to the heme ferric iron.

摘要

对催化过氧化氯化、溴化和碘化反应的氯过氧化物酶的氧化还原电位进行了研究。除了催化生物卤化反应外,氯过氧化物酶的独特之处在于,亚铁氯过氧化物酶的一氧化碳复合物显示出与P-450血红素蛋白相关的典型长波长Soret吸收。氯过氧化物酶氧化还原电位的pH依赖性在pH 4.7左右出现不连续。同样,通过光谱和电位滴定监测的亚铁氯过氧化物酶对一氧化碳的亲和力测量在pH 4.7区域也出现不连续。在CO气氛中对氯过氧化物酶的氧化还原电位测量也显示出不连续的pH曲线。这些结果表明,亚铁氯过氧化物酶在低pH下会发生可逆修饰,并且这些变化反映在氧化还原电位中。氯过氧化物酶在pH  6.9时的氧化还原电位为-140 mV,接近在底物存在下对细胞色素P-450cam测量的值。氯过氧化物酶在pH 2.7(酶促氯化的最适pH)时的氧化还原电位为+150 mV。氯过氧化物酶的卤化物复合物(氯化物、溴化物和碘化物)的氧化还原电位与天然酶的电位测量基本相同。这些观察结果表明,虽然卤化物阴离子与酶结合,但它们可能不会作为轴向配体与血红素铁离子结合。

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