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首页> 外文期刊>Biochemistry >Peptide-Protein Interactions: Photoinduced Electron-Transfer within the Preformed and Encounter Complexes of a Designed Metallopeptide and Cytochrome c.
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Peptide-Protein Interactions: Photoinduced Electron-Transfer within the Preformed and Encounter Complexes of a Designed Metallopeptide and Cytochrome c.

机译:肽 - 蛋白质相互作用:设计的金属肽和细胞色素C的预成型和遇到复合物内的光突出电子转移。

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摘要

Photoinduced electron-transfer (ET) occurs between a negatively charged metallopeptide, [Ru(bpy)(2)(phen-am)-Cys-(Glu)(5)-Gly](3)(-) = RuCE(5)G, and ferricytochrome c = Cyt c. In the presence of Cyt c, the triplet state lifetime of the ruthenium metallopeptide is shortened, and the emission decays via biexponential kinetics, which indicates the existence of two excited-state populations of ruthenium peptides. The faster decay component displays concentration-independent kinetics demonstrating the presence of a preformed peptide-protein complex that undergoes intra-complex electron-transfer. Values of K(b) = (3.5 +/- 0.2) x 10(4) M(-)(1) and = (2.7 +/- 0.4) x 10(6) s(-)(1) were observed at ambient temperatures. The magnitude of decreases with increasing solvent viscosity, and the behavior can be fit to the expression proportional, variant eta(-)(alpha) to give alpha = 0.59 +/- 0.05. The electron-transfer process occurring in the preformed complex is therefore gated by a rate-limiting configurational change of the complex. The slower decay component displays concentration-dependent kinetics that saturate at high concentrations of Cyt c. Analysis according to rapid equilibrium formation of an encounter complex that undergoes unimolecular electron-transfer yields K(b)' = (2.5 +/- 0.7) x 10(4) M(-)(1) and = (7 +/- 3) x 10(5) s(-)(1). The different values of and suggest that the peptide lies farther from the heme when in the encounter complex. The value of is viscosity dependent indicating that the reaction occurring within the encounter complex is also configurationally gated. A value of alpha = 0.98 +/- 0.14 is observed for, which suggests that the rate-limiting gating processes in the encounter complex is different from that in the preformed complex.
机译:光突出的电子转移(ET)在带负电荷的金属肽之间发生,[Ru(BPY)(2)(2)(Phen-AM)-Cys-(glu)(5) - -gly](3)( - )= ruce(5) G,和Ferricycochrome c = cyt c。在Cyt C的存在下,缩短钌冶金肽的三重态寿命,并且通过Biexponential动力学衰减,这表明存在两种激发型钌肽的兴奋性群体。更快的衰减组件显示浓度无关的动力学,证明存在经历复合物电子转移的预制肽 - 蛋白质复合物的存在。 K(b)=(3.5 +/- 0.2)×10(4)m( - )(1)和=(2.7 +/- 0.4)×10(6)S( - )(1)在环境温度。随着溶剂粘度的增加而降低,行为可以适合表达比例,变体ETA( - )( - α),得到α= 0.59 +/- 0.05。因此,通过复合物的速率限制配置变化,在预成型复合物中发生的电子转移过程。较慢的衰减组分显示浓度依赖性动力学,其在高浓度的Cyt c中饱和。根据遇到复合物的快速平衡形成的分析,经历单分子电子 - 转移产率K(b)'=(2.5 +/- 0.7)×10(4)m( - )(1)和=(7 +/- 3 )x 10(5)s( - )(1)。不同的值和表明肽在遭遇复合物时从血液​​中位于血红素中。粘度的值依赖性表明在遭遇复合物内发生的反应也是配置的。观察到α= 0.98 +/- 0.14的值,这表明遇到复合物中的速率限制门控过程与预先形成的复合物中的速率限制。

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