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Magnetic tweezers: a sensitive tool to study DNA and chromatin at the single-molecule level.

机译:磁性镊子:一种用于研究单分子水平的DNA和染色质的灵敏工具。

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摘要

The advent of single-molecule biology has allowed unprecedented insight into the dynamic behavior of biological macromolecules and their complexes. Unexpected properties, masked by the asynchronous behavior of myriads of molecules in bulk experiments, can be revealed; equally importantly, individual members of a molecular population often exhibit distinct features in their properties. Finally, the single-molecule approaches allow us to study the behavior of biological macromolecules under applied tension or torsion; understanding the mechanical properties of these molecules helps us understand how they function in the cell. In this review, we summarize the application of magnetic tweezers (MT) to the study of DNA behavior at the single-molecule level. MT can be conveniently used to stretch DNA and introduce controlled levels of superhelicity into the molecule and to follow to a high definition the action of different types of topoisomerases. Its potential for chromatin studies is also enormous, and we will briefly present our first chromatin results.
机译:单分子生物学的出现使人们对生物大分子及其复合物的动力学行为有了空前的见识。大量实验中无数分子的异步行为掩盖了意想不到的特性;同样重要的是,分子种群的各个成员通常在其性质上表现出独特的特征。最后,单分子方法使我们能够研究生物大分子在施加张力或扭转下的行为。了解这些分子的机械特性有助于我们了解它们在细胞中的功能。在这篇综述中,我们总结了磁性镊子(MT)在单分子水平上DNA行为研究中的应用。 MT可以方便地用于拉伸DNA并将可控水平的超螺旋性引入分子中,并严格遵循不同类型拓扑异构酶的作用。它在染色质研究中的潜力也是巨大的,我们将简要介绍我们的第一个染色质结果。

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