Beckman Institute, California Institute of Technology , Pasadena, California 91125, United States.
J Phys Chem B. 2013 Oct 24;117(42):13206-11. doi: 10.1021/jp403234h. Epub 2013 Aug 30.
We have investigated intrachain contact dynamics in unfolded cytochrome cb562 by monitoring heme quenching of excited ruthenium photosensitizers covalently bound to residues along the polypeptide. Intrachain diffusion for chemically denatured proteins proceeds on the microsecond time scale with an upper limit of 0.1 μs. The rate constants exhibit a power-law dependence on the number of peptide bonds between the heme and Ru complex. The power-law exponent of -1.5 is consistent with theoretical models for freely jointed Gaussian chains, but its magnitude is smaller than that reported for several synthetic polypeptides. Contact formation within a stable loop was examined in a His63-heme ligated form of the protein under denaturing conditions. Loop formation accelerated contact kinetics for the Ru66 labeling site, owing to reduction in the length of the peptide separating redox sites. For other labeling sites within the stable loop, quenching rates were modestly reduced compared to the open chain polymer.
我们通过监测共价结合在多肽链上的残基的钌光感受器激发态的血红素猝灭来研究去折叠细胞色素 cb562 中的链内接触动力学。化学变性蛋白质的链内扩散在微秒时间尺度上进行,上限为 0.1 μs。速率常数与血红素和 Ru 络合物之间的肽键数呈幂律关系。-1.5 的幂律指数与自由连接高斯链的理论模型一致,但它的大小小于几个合成多肽的报道。在变性条件下,在 His63-血红素配位的蛋白质形式下,我们检查了稳定环内的接触形成。由于减少了将氧化还原位点分开的肽的长度,环的形成加速了 Ru66 标记位点的接触动力学。对于稳定环内的其他标记位点,猝灭速率与开链聚合物相比略有降低。