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How molecular motors work – insights from the molecular machinists toolbox: the Nobel prize in Chemistry 2016

机译:分子电动机的工作原理–分子机械师工具箱的见解:2016年诺贝尔化学奖

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摘要

The Nobel prize in Chemistry for 2016 was awarded to Jean Pierre Sauvage, Sir James Fraser Stoddart, and Bernard (Ben) Feringa for their contributions to the design and synthesis of molecular machines. While this field is still in its infancy, and at present there are no commercial applications, many observers have stressed the tremendous potential of molecular machines to revolutionize technology. However, perhaps the most important result so far accruing from the synthesis of molecular machines is the insight provided into the fundamental mechanisms by which molecular motors, including biological motors such as kinesin, myosin, FoF1 ATPase, and the flagellar motor, function. The ability to “tinker” with separate components of molecular motors allows asking, and answering, specific questions about mechanism, particularly with regard to light driven vs. chemistry driven molecular motors.
机译:Jean Pierre Sauvage,James Fraser Stoddart爵士和Bernard(Ben)Feringa在2016年的诺贝尔化学奖中对分子机器的设计和合成做出了贡献。尽管这个领域还处于起步阶段,并且目前还没有商业应用,但是许多观察家已经强调了分子机器在革新技术方面的巨大潜力。但是,到目前为止,从分子机器的合成中获得的最重要的结果可能是对分子动力(包括生物动力,如驱动蛋白,肌球蛋白,FoF1 ATPase和鞭毛动力)起作用的基本机制的深刻见解。对分子电动机的各个组件进行“修补”的能力允许提出和回答有关机理的特定问题,尤其是在光驱动与化学驱动的分子电动机方面。

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