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光合反应中心中动态控制的蛋白质隧道路径。

Dynamically controlled protein tunneling paths in photosynthetic reaction centers.

作者信息

Balabin I A, Onuchic J N

机构信息

Department of Physics, University of California at San Diego, La Jolla, CA 92093-0319, USA.

出版信息

Science. 2000 Oct 6;290(5489):114-7. doi: 10.1126/science.290.5489.114.

Abstract

Marcus theory has explained how thermal nuclear motions modulate the energy gap between donor and acceptor sites in protein electron transfer reactions. Thermal motions, however, may also modulate electron tunneling between these reactions. Here we identify a new mechanism of nuclear dynamics amplification that plays a central role when interference among the dominant tunneling pathway tubes is destructive. In these cases, tunneling takes place in protein conformations far from equilibrium that minimize destructive interference. As an example, we demonstrate how this dynamical amplification mechanism affects certain reaction rates in the photosynthetic reaction center and therefore may be critical for biological function.

摘要

马库斯理论解释了热核运动如何调节蛋白质电子转移反应中供体和受体位点之间的能隙。然而,热运动也可能调节这些反应之间的电子隧穿。在这里,我们确定了一种核动力学放大的新机制,当主导隧穿路径管之间的干涉具有破坏性时,该机制起着核心作用。在这些情况下,隧穿发生在远离平衡的蛋白质构象中,从而使破坏性干涉最小化。例如,我们展示了这种动力学放大机制如何影响光合反应中心的某些反应速率,因此可能对生物学功能至关重要。

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