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Kinetics: a tool to study molecular motors.

机译:动力学:研究分子马达的工具。

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摘要

Molecular motors are enzymes that couple the energy from nucleoside triphosphate hydrolysis to movement along a filament lattice. The three cytoskeletal motor superfamilies include myosin, dynein, and kinesin. However, in the last decade it has become apparent that the nucleic acid-based enzymes (DNA and RNA polymerases as well as the DNA helicases) share a number of mechanistic features in common with the microtubule and actin motors despite the fact that their cellular functions are so different. This review addresses the mechanistic approaches that have been used to study molecular motors. We discuss the basic biochemical techniques used to characterize a protein preparation, including active site determination and steady-state kinetics. In addition, we present the transient-state kinetic approaches used to define a mechanochemical cycle. We attempt to integrate the information obtained from kinetic studies within the context of motility results to provide a better understanding of the contribution of each approach for dissecting unidirectional force generation. Copyright 2000 Academic Press.
机译:分子马达是将三磷酸核苷水解产生的能量耦合到沿着长丝晶格运动的酶。三个细胞骨架运动超家族包括肌球蛋白,动力蛋白和驱动蛋白。然而,在过去的十年中,基于核酸的酶(DNA和RNA聚合酶以及DNA解旋酶)尽管具有细胞功能,但仍具有与微管和肌动蛋白马达相同的许多机械特性,这一点已变得显而易见。是如此不同。这项审查解决了已用于研究分子马达的机械方法。我们讨论了用于表征蛋白质制备的基本生化技术,包括活性位点测定和稳态动力学。此外,我们介绍了瞬态动力学方法,用于定义机械化学循环。我们试图在动力结果的背景下整合从动力学研究中获得的信息,以更好地理解每种方法对解剖单向力的贡献。版权所有2000学术出版社。

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