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Translational actomyosin research: fundamental insights and applications hand in hand

机译:转化性肌动球蛋白研究:共同的基本见解和应用

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摘要

This review describes the development towards actomyosin based nanodevices taking a starting point in pioneering studies in the 1990s based on conventional in vitro motility assays. References are given to parallel developments using the kinesin–microtubule motor system. The early developments focused on achieving cargo-transportation using actin filaments as cargo-loaded shuttles propelled by surface-adsorbed heavy meromyosin along micro- and nanofabricated channels. These efforts prompted extensive studies of surface–motor interactions contributing with new insights of general relevance in surface and colloid chemistry. As a result of these early efforts, a range of complex devices have now emerged, spanning applications in medical diagnostics, biocomputation and formation of complex nanostructures by self-organization. In addition to giving a comprehensive account of the developments towards real-world applications an important goal of the present review is to demonstrate important connections between the applied studies and fundamental biophysical studies of actomyosin and muscle function. Thus the manipulation of the motor proteins towards applications has resulted in new insights into methodological aspects of the in vitro motiliy assay. Other developments have advanced the understanding of the dynamic materials properties of actin filaments.
机译:这篇综述描述了基于放线菌素的纳米装置的发展,该装置以1990年代基于常规体外运动分析的开创性研究为起点。使用驱动蛋白-微管马达系统的平行开发已获得参考。早期的发展集中在利用肌动蛋白丝作为载物的穿梭物实现货物运输,穿梭物是由表面吸附的重肌球蛋白沿着微和纳米加工通道推动的。这些努力促使人们对表面与运动的相互作用进行了广泛的研究,为表面和胶体化学的一般相关性提供了新的见解。由于这些早期的努力,现在出现了一系列复杂的设备,涵盖了医学诊断,生物计算以及通过自组织形成复杂纳米结构的应用。除了全面介绍实际应用的发展,本综述的一个重要目标是证明放线菌素和肌肉功能的应用研究与基础生物物理研究之间的重要联系。因此,针对应用的运动蛋白操纵已导致对体外运动分析的方法学方面的新见解。其他发展使对肌动蛋白丝的动态材料性能有了更深入的了解。

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