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游离黄素半醌对细胞色素c与细胞色素c过氧化物酶的共价和非共价复合物中电子转移及复合物各组分还原的动力学

Kinetics of intracomplex electron transfer and of reduction of the components of covalent and noncovalent complexes of cytochrome c and cytochrome c peroxidase by free flavin semiquinones.

作者信息

Hazzard J T, Moench S J, Erman J E, Satterlee J D, Tollin G

机构信息

Department of Biochemistry, University of Arizona, Tucson 85721.

出版信息

Biochemistry. 1988 Mar 22;27(6):2002-8. doi: 10.1021/bi00406a029.

Abstract

The kinetics of reduction of free flavin semiquinones of the individual components of 1:1 covalent and electrostatic complexes of yeast ferric and ferryl cytochrome c peroxidase and ferric horse cytochrome c have been studied. Covalent cross-linking between the peroxidase and cytochrome c at low ionic strength results in a complex that has kinetic properties both similar to and different from those of the electrostatic complex. Whereas the cytochrome c heme exposure to exogenous reductants is similar in both complexes, the apparent electrostatic environment near the cytochrome c heme edge is markedly different. In the electrostatic complex, a net positive charge is present, whereas in the covalent complex, an essentially neutral electrostatic charge is found. Intracomplex electron transfer within the two complexes is also different. For the covalent complex, electron transfer from ferrous cytochrome c to the ferryl peroxidase has a rate constant of 1560 s-1, which is invariant with respect to changes in the ionic strength. The rate constant for intracomplex electron transfer within the electrostatic complex is highly ionic strength dependent. At mu = 8 mM a value of 750 s-1 has been obtained [Hazzard, J. T., Poulos, T. L., & Tollin, G. (1987) Biochemistry 26, 2836-2848], whereas at mu = 30 mM the value is 3300 s-1. This ionic strength dependency for the electrostatic complex has been interpreted in terms of the rearrangement of the two proteins comprising the complex to a more favorable orientation for electron transfer. In the case of the covalent complex, such reorientation is apparently impeded.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

对酵母铁和高铁细胞色素c过氧化物酶与高铁马细胞色素c的1:1共价和静电复合物中各组分游离黄素半醌的还原动力学进行了研究。在低离子强度下,过氧化物酶与细胞色素c之间的共价交联产生了一种复合物,其动力学性质与静电复合物既有相似之处,也有不同之处。虽然两种复合物中细胞色素c血红素对外源还原剂的暴露情况相似,但细胞色素c血红素边缘附近的表观静电环境明显不同。在静电复合物中存在净正电荷,而在共价复合物中则发现基本呈中性的静电荷。两种复合物内的复合物内电子转移也不同。对于共价复合物,从亚铁细胞色素c到高铁过氧化物酶的电子转移速率常数为1560 s-1,该常数不随离子强度的变化而变化。静电复合物内复合物内电子转移的速率常数高度依赖于离子强度。在μ = 8 mM时,得到的值为750 s-1 [哈扎德,J. T.,普洛斯,T. L.,&托林,G.(198)生物化学26,2836 - 2848],而在μ = 30 mM时,该值为3300 s-1。静电复合物的这种离子强度依赖性已根据构成复合物的两种蛋白质重排为更有利于电子转移的方向来解释。对于共价复合物,这种重排显然受到阻碍。(摘要截短于250字)

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