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氢键介导的电子耦合的直接评估:对生物电子转移的影响

Direct evaluation of electronic coupling mediated by hydrogen bonds: implications for biological electron transfer.

作者信息

de Rege P J, Williams S A, Therien M J

机构信息

Department of Chemistry, University of Pennsylvania, Philadelphia 19104-6323, USA.

出版信息

Science. 1995 Sep 8;269(5229):1409-13. doi: 10.1126/science.7660123.

Abstract

Three supramolecular bischromophoric systems featuring zinc(II) and iron(III) porphyrins have been synthesized to evaluate the relative magnitudes of electronic coupling provided by hydrogen, sigma, and pi bonds. Laser flash excitation generates the highly reducing singlet excited state of the (porphinato)zinc chromophore that can subsequently be electron transfer quenched by the (porphinato)iron(III) chloride moiety. Measurement of the photoinduced electron transfer rate constants enables a direct comparison of how well these three types of chemical interactions facilitate electron tunneling. In contrast to generally accepted theory, electronic coupling modulated by a hydrogen-bond interface is greater than that provided by an analogous interface composed entirely of carbon-carbon sigma bonds. These results bear considerably on the analysis of through-protein electron transfer rate data as well as on the power of theory to predict the path traversed by the tunneling electron in a biological matrix; moreover, they underscore the cardinal role played by hydrogen bonds in biological electron transfer processes.

摘要

已合成了三种以锌(II)和铁(III)卟啉为特征的超分子双发色团体系,以评估由氢键、σ键和π键提供的电子耦合的相对大小。激光闪光激发产生(卟啉基)锌发色团的高还原性单线态激发态,随后该激发态可被氯化(卟啉基)铁(III)部分进行电子转移猝灭。光诱导电子转移速率常数的测量能够直接比较这三种类型的化学相互作用促进电子隧穿的能力。与普遍接受的理论相反,由氢键界面调制的电子耦合大于由完全由碳 - 碳σ键组成的类似界面提供的电子耦合。这些结果对通过蛋白质的电子转移速率数据的分析以及理论预测生物基质中隧穿电子所经过路径的能力有很大影响;此外,它们强调了氢键在生物电子转移过程中所起的关键作用。

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