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Watching cellular machinery in action, one molecule at a time

机译:观看手术中的蜂窝机械,一次一个分子

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Single-molecule manipulation and imaging techniques have become important elements of the biologist’s toolkit to gain mechanistic insights into cellular processes. By removing ensemble averaging, single-molecule methods provide unique access to the dynamic behavior of biomolecules. Recently, the use of these approaches has expanded to the study of complex multiprotein systems and has enabled detailed characterization of the behavior of individual molecules inside living cells. In this review, we provide an overview of the various force- and fluorescence-based single-molecule methods with applications both in vitro and in vivo, highlighting these advances by describing their applications in studies on cytoskeletal motors and DNA replication. We also discuss how single-molecule approaches have increased our understanding of the dynamic behavior of complex multiprotein systems. These methods have shown that the behavior of multicomponent protein complexes is highly stochastic and less linear and deterministic than previously thought. Further development of single-molecule tools will help to elucidate the molecular dynamics of these complex systems both inside the cell and in solutions with purified components.
机译:单分子操纵和成像技术已成为生物学家工具包的重要元素,以获得蜂窝过程的机械洞察力。通过去除集合平均值,单分子方法提供了对生物分子的动态行为的独特访问。最近,这些方法的使用已经扩展到复杂多蛋白系统的研究,并能够详细表征活细胞内单个分子的行为。在本综述中,我们通过在体外和体内提供各种力和荧光的单分子方法,通过描述其在细胞骨骼电机和DNA复制的研究中的应用来突出这些进展。我们还讨论了单分子方法如何提高我们对复杂多蛋白系统的动态行为的理解。这些方法表明,多组分蛋白质复合物的行为高度随机且较少的线性和确定性而不是先前思考。单分子工具的进一步发展将有助于阐明这些复合体系的分子动力学在细胞内和纯化组分的溶液中。

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