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用于研究病毒的光镊

Optical Tweezers to Study Viruses.

作者信息

Arias-Gonzalez J Ricardo

机构信息

Centro de Tecnologías Físicas, Universitat Politècnica de València, Valencia, Spain.

出版信息

Subcell Biochem. 2024;105:359-399. doi: 10.1007/978-3-031-65187-8_10.

Abstract

A virus is a complex molecular machine that propagates by channeling its genetic information from cell to cell. Unlike macroscopic engines, it operates in a nanoscopic world under continuous thermal agitation. Viruses have developed efficient passive and active strategies to pack and release nucleic acids. Some aspects of the dynamic behavior of viruses and their substrates can be studied using structural and biochemical techniques. By the turn of the millennium, physical techniques have been applied to dynamic studies of viruses in which their intrinsic mechanical activity can be measured directly. Optical tweezers are a technology that can be used to measure the force, torque, and strain produced by molecular motors, as a function of time and at the single-molecule level. Thanks to this technique, some bacteriophages are now known to be powerful nanomachines; they exert force in the piconewton range and their motors work in a highly coordinated fashion for packaging the viral nucleic acid genome. Nucleic acids, whose elasticity and condensation behavior are inherently coupled to the viral packaging mechanisms, virion assembly, and virion-cell interactions are also amenable to examination with optical tweezers. In this chapter, we provide a comprehensive analysis of this laser-based tool, its combination with imaging methods, and its application to the study of viruses and viral molecules.

摘要

病毒是一种复杂的分子机器,通过在细胞间传递其遗传信息进行繁殖。与宏观引擎不同,它在持续热搅动的纳米世界中运作。病毒已经发展出高效的被动和主动策略来包装和释放核酸。病毒及其底物动态行为的某些方面可以使用结构和生化技术进行研究。到千禧年之交,物理技术已被应用于病毒的动态研究,在这些研究中可以直接测量病毒的内在机械活性。光镊是一种可用于测量分子马达产生的力、扭矩和应变的技术,它是时间和单分子水平的函数。由于这项技术,现在已知一些噬菌体是强大的纳米机器;它们施加皮牛顿范围内的力,并且它们的马达以高度协调的方式工作以包装病毒核酸基因组。核酸的弹性和凝聚行为与病毒包装机制、病毒体组装以及病毒体 - 细胞相互作用内在相关,也适合用光镊进行检测。在本章中,我们对这种基于激光的工具、它与成像方法的结合以及它在病毒和病毒分子研究中的应用进行了全面分析。

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