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Modeling Electron Transfer Thermodynamics in Protein Complexes: Interaction between Two Cytochromes c3

机译:蛋白质复合物中电子传递热力学建模:两个细胞色素c3之间的相互作用

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摘要

Redox protein complexes between type I and type II tetraheme cytochromes c3 from Desulfovibrio vulgaris Hildenborough are here analyzed using theoretical methodologies. Various complexes were generated using rigid-body docking techniques, and the two lowest energy complexes (1 and 2) were relaxed using molecular dynamics simulations with explicit solvent and subjected to further characterization. Complex 1 corresponds to an interaction between hemes I from both cytochromes c3. Complex 2 corresponds to an interaction between the heme IV from type I and the heme I from type II cytochrome c3. Binding free energy calculations using molecular mechanics, Poisson-Boltzmann, and surface accessibility methods show that complex 2 is more stable than complex 1. Thermodynamic calculations on complex 2 show that complex formation induces changes in the reduction potential of both cytochromes c3, but the changes are larger in the type I cytochrome c3 (the largest one occurring on heme IV, of ∼80 mV). These changes are sufficient to invert the global titration curves of both cytochromes, generating directionally in electron transfer from type I to type II cytochrome c3, a phenomenon of obvious thermodynamic origin and consequences, but also with kinetic implications. The existence of processes like this occurring at complex formation may constitute a natural design of efficient redox chains.
机译:本文使用理论方法分析了来自Desulfovibrio vulgaris Hildenborough的I型和II型四血红素细胞色素c3之间的氧化还原蛋白复合物。使用刚体对接技术生成了各种络合物,并使用具有明确溶剂的分子动力学模拟对两个最低能量的络合物(1和2)进行了弛豫,并进行了进一步的表征。复合物1对应于来自两种细胞色素c3的血红素I之间的相互作用。复合物2对应于I型血红素IV和II型细胞色素c3的血红素I之间的相互作用。使用分子力学,泊松玻耳兹曼法和表面可及性方法进行的结合自由能计算表明,配合物2比配合物1更稳定。对配合物2的热力学计算表明,配合物的形成会引起两种细胞色素c3的还原电位的变化,但这种变化在I型细胞色素c3中更大(在血红素IV上最大,约为80 mV)。这些变化足以颠倒两种细胞色素的总体滴定曲线,从而在从I型到II型细胞色素c3的电子转移中产生定向作用,这是明显的热力学起源和后果,但也具有动力学意义。在复杂的形成过程中发生的类似过程的存在可能构成有效氧化还原链的自然设计。

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