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首页> 外文期刊>The Biochemical Journal >Osmotic pressure effects identify dehydration upon cytochrome c-cytochrome c oxidase complex formation contributing to a specific electron pathway formation
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Osmotic pressure effects identify dehydration upon cytochrome c-cytochrome c oxidase complex formation contributing to a specific electron pathway formation

机译:渗透压效应在细胞色素C-细胞色素C氧化酶复合物中鉴定脱水,有助于特定的电子通路形成

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摘要

In the electron transfer (ET) reaction from cytochrome c (Cyt c) to cytochrome c oxidase (CcO), we determined the number and sites of the hydration water released from the protein surface upon the formation of the ET complex by evaluating the osmotic pressure dependence of kinetics for the ET from Cyt c to CcO. We identified that similar to 20 water molecules were dehydrated in complex formation under turnover conditions, and systematic Cyt c mutations in the interaction site for CcO revealed that nearly half of the released hydration water during the complexation were located around Ile81, one of the hydrophobic amino acid residues near the exposed heme periphery of Cyt c. Such a dehydration dominantly compensates for the entropy decrease due to the association of Cyt c with CcO, resulting in the entropy-driven ET reaction. The energetic analysis of the interprotein interactions in the ET complex predicted by the docking simulation suggested the formation of hydrophobic interaction sites surrounding the exposed heme periphery of Cyt c in the Cyt c-CcO interface (a 'molecular breakwater'). Such sites would contribute to the formation of the hydrophobic ET pathway from Cyt c to CcO by blocking water access from the bulk water phase.
机译:在来自细胞色素C(Cyt C)至细胞色素C氧化酶(CCO)的电子转移(ET)反应中,通过评估渗透压,确定在形成Et络合物时从蛋白质表面释放的水合水的数量和位点动力学对来自CO至CCO的等依赖性。我们认为类似于20个水分子在周转条件下的复杂形成中脱水,CCO的相互作用位点中的系统性Cyt C突变显示,在络合过程中释放的水合水的近一半位于Ile81,疏水性氨基之一。酸残基附近的暴露血红素周围Cyt C。这种脱水显着补偿了由于CCO的CCO的Co,导致熵减少,导致熵驱动的ET反应。通过对接模拟预测的ET络合物中的诠释素相互作用的能量分析表明,在CYT C-CCO接口('分子防波水')中,细胞C的暴露血红素周围的疏水相互作用位点的形成。这些部位将通过阻挡来自大容量水相的水分来形成从CYT C到CCO的疏水性ET途径。

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