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Remote electrochemical modulation of pKa in a rotaxane by co-conformational allostery

机译:共构构构象法远程监测轮烷中的pKa

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摘要

Allosteric control, one of Nature’s most effective ways to regulate functions in biomolecular machinery, involves the transfer of information between distant sites. The mechanistic details of such a transfer are still an object of intensive investigation and debate, and the idea that intramolecular communication could be enabled by dynamic processes is gaining attention as a complement to traditional explanations. Mechanically interlocked molecules, owing to the particular kind of connection between their components and the resulting dynamic behavior, are attractive systems to investigate allosteric mechanisms and exploit them to develop functionalities with artificial species. We show that the pKa of an ammonium site located on the axle component of a [2]rotaxane can be reversibly modulated by changing the affinity of a remote recognition site for the interlocked crown ether ring through electrochemical stimulation. The use of a reversible ternary redox switch enables us to set the pKa to three different values, encompassing more than seven units. Our results demonstrate that in the axle the two sites do not communicate, and that in the rotaxane the transfer of information between them is made possible by the shuttling of the ring, that is, by a dynamic intramolecular process. The investigated coupling of electron- and proton-transfer reactions is reminiscent of the operation of the protein complex I of the respiratory chain.
机译:变构控制是自然界最有效的调节生物分子机器功能的方法之一,它涉及到远处之间的信息传递。这种转移的机械细节仍然是深入研究和辩论的对象,并且分子内通信可以通过动态过程实现的想法正受到人们的关注,以作为对传统解释的补充。由于分子之间的特殊类型连接以及由此产生的动力学行为,机械互锁的分子是研究变构机制并利用它们开发人造物种功能的诱人系统。我们显示,通过改变电化学识别刺激对互锁冠醚环的远程识别位点的亲和力,可逆地调节位于[2]轮烷的轴成分上的铵位点的pKa。使用可逆三元氧化还原开关,我们可以将pKa设置为三个不同的值,包括七个以上的单位。我们的结果表明,在轴中这两个位点不连通,而在轮烷中,这两个位点之间的信息传递是通过环的穿梭(即通过动态分子内过程)实现的。研究的电子和质子转移反应的耦合使人联想到呼吸链蛋白复合体I的操作。

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