首页> 外文OA文献 >SPECTRAL AND KINETIC PROPERTIES OF CHLOROBIUM THIOSULFATOPHILUM CYTOCHROME C-555 (ELECTROSTATICS, REDOX KINETICS, CIRCULAR DICHROISM).
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SPECTRAL AND KINETIC PROPERTIES OF CHLOROBIUM THIOSULFATOPHILUM CYTOCHROME C-555 (ELECTROSTATICS, REDOX KINETICS, CIRCULAR DICHROISM).

机译:硫代硫代硫酸根细胞色素C-555的光谱和动力学性质(电子,氧化还原动力学,圆二色性)。

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摘要

The spectral and kinetic properties of Chlorobium thiosulfatophilum cytochrome c-555 have been investigated and are compared to analogous properties of procaryotic and eucaryotic c-type cytochromes. The circular dichroism spectra are similar for c-type cytochromes of a given class and effects arising from specific amino acid substitutions are determined. The oxidation-reduction state dependence of the spectra in the near-ultraviolet region is interpreted in terms of changes in hydrogen bonding and polarity of the environment of aromatic amino acid residues in close proximity to heme iron resulting from small structural changes. An electrostatic model of bimolecular rate constants is developed to adequately describe the electric field effects for accurate computation of intrinsic rate constants. Structural models of bimolecular complexes of cytochrome c and flavodoxin or cytochrome b₅, developed by other investigators, are used to constrain the dielectric coefficients of the electrostatic model. Using these constraints, the relative contributions of ionic and dipolar interactions to the intermolecular electrostatic potential energies are estimated for several c-type cytochrome reactions. The ionic contribution is adequately described by the charged residue interactions in the region of intermolecular contact, and the dipolar contribution is adequately described by the molecular dipole moment. Oxidation-reduction reactions of cytochrome c-555 with small molecule reagents suggest a mechanism of electron transfer that is similar to other c-type cytochromes. In general, electron transfer may be preceded by formation of a bimolecular collision complex or may occur during the collision. Further, the ionic strength dependence of second-order rate constants indicates that molecular electric fields significantly affect the bimolecular reaction rates. Calculated intrinsic rate constants are dependent on the difference between oxidation-reduction potentials of the reactants as predicted by Marcus outer sphere electron transfer theory. The mechanism of reduction of c-type cytochromes by flavodoxin semiquinone is similar to the mechanism of electron transfer reactions involving small molecules. Thus, principles involved in protein-small molecule reactions are also involved in protein-protein reactions.
机译:已经研究了硫代绿硫杆菌细胞色素c-555的光谱和动力学性质,并将其与原核和真核c型细胞色素的类似性质进行了比较。圆二色性光谱对于给定类别的c型细胞色素是相似的,并确定了由特定氨基酸取代引起的影响。根据氢键的变化以及由于小的结构变化而导致的与血红素紧密接近的芳族氨基酸残基的环境极性,来解释近紫外区域中光谱的氧化还原状态依赖性。建立了双分子速率常数的静电模型以充分描述电场效应,以准确计算内在速率常数。由其他研究人员开发的细胞色素c和黄酮毒素或细胞色素b 1的双分子复合物的结构模型用于约束静电模型的介电系数。使用这些约束条件,对于几种c型细胞色素反应,估计了离子和偶极相互作用对分子间静电势能的相对贡献。通过分子间接触区域中带电残基的相互作用来充分描述离子的贡献,通过分子偶极矩来充分描述偶极的贡献。细胞色素c-555与小分子试剂的氧化还原反应表明,电子转移的机理与其他c型细胞色素相似。通常,电子转移可以在形成双分子碰撞配合物之前进行,或者可以在碰撞过程中发生。此外,二阶速率常数对离子强度的依赖性表明分子电场显着影响双分子反应速率。如Marcus外球电子转移理论所预测的,计算的固有速率常数取决于反应物的氧化还原电位之间的差异。黄酮毒素半醌还原c型细胞色素的机理与涉及小分子的电子转移反应的机理相似。因此,涉及蛋白质-小分子反应的原理也涉及蛋白质-蛋白质反应。

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    WATKINS JOSEPH ABRA.;

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  • 年度 1986
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