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将单分子 FRET 与生物分子模拟相结合,研究核酸与蛋白质之间的多种相互作用。

Integrating single-molecule FRET and biomolecular simulations to study diverse interactions between nucleic acids and proteins.

机构信息

Department of Chemistry, University of Kansas, Lawrence, KS, U.S.A.

Department of Molecular Biosciences, University of Kansas, Lawrence, KS, U.S.A.

出版信息

Essays Biochem. 2021 Apr 16;65(1):37-49. doi: 10.1042/EBC20200022.

Abstract

The conformations of biological macromolecules are intimately related to their cellular functions. Conveniently, the well-characterized dipole-dipole distance-dependence of Förster resonance energy transfer (FRET) makes it possible to measure and monitor the nanoscale spatial dimensions of these conformations using fluorescence spectroscopy. For this reason, FRET is often used in conjunction with single-molecule detection to study a wide range of conformationally dynamic biochemical processes. Written for those not yet familiar with the subject, this review aims to introduce biochemists to the methodology associated with single-molecule FRET, with a particular emphasis on how it can be combined with biomolecular simulations to study diverse interactions between nucleic acids and proteins. In the first section, we highlight several conceptual and practical considerations related to this integrative approach. In the second section, we review a few recent research efforts wherein various combinations of single-molecule FRET and biomolecular simulations were used to study the structural and dynamic properties of biochemical systems involving different types of nucleic acids (e.g., DNA and RNA) and proteins (e.g., folded and disordered).

摘要

生物大分子的构象与其细胞功能密切相关。很方便的是,Förster 共振能量转移(FRET)的特征性偶极-偶极距离依赖性使其能够使用荧光光谱法测量和监测这些构象的纳米级空间维度。出于这个原因,FRET 通常与单分子检测结合使用,以研究广泛的构象动态生化过程。本综述专为那些对该主题尚不熟悉的人撰写,旨在向生物化学家介绍与单分子 FRET 相关的方法,特别强调如何将其与生物分子模拟相结合,以研究核酸和蛋白质之间的各种相互作用。在第一节中,我们强调了与这种综合方法相关的几个概念和实践考虑因素。在第二节中,我们回顾了一些最近的研究工作,其中使用了单分子 FRET 和生物分子模拟的各种组合来研究涉及不同类型核酸(例如 DNA 和 RNA)和蛋白质(例如折叠和无序)的生化系统的结构和动态特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7d0/8056042/2023eb785be9/ebc-65-ebc20200022-g1.jpg

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