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原子力显微镜和力谱技术在评估蛋白质折叠和功能中的应用。

Atomic force microscopy and force spectroscopy on the assessment of protein folding and functionality.

机构信息

Instituto de Medicina Molecular, Faculdade de Medicina, Universidade de Lisboa, Lisbon, Portugal.

出版信息

Arch Biochem Biophys. 2013 Mar;531(1-2):116-27. doi: 10.1016/j.abb.2012.11.007. Epub 2012 Dec 7.

Abstract

Atomic force microscopy (AFM) applied to biological systems can, besides generating high-quality and well-resolved images, be employed to study protein folding via AFM-based force spectroscopy. This approach allowed remarkable advances in the measurement of inter- and intramolecular interaction forces with piconewton resolution. The detection of specific interaction forces between molecules based on the AFM sensitivity and the manipulation of individual molecules greatly advanced the understanding of intra-protein and protein-ligand interactions. Apart from the academic interest in the resolution of basic scientific questions, this technique has also key importance on the clarification of several biological questions of immediate biomedical relevance. Force spectroscopy is an especially appropriate technique for "mechanical proteins" that can provide crucial information on single protein molecules and/or domains. Importantly, it also has the potential of combining in a single experiment spatial and kinetic measurements. Here, the main principles of this methodology are described, after which the ability to measure interactions at the single-molecule level is discussed, in the context of relevant protein-folding examples. We intend to demonstrate the potential of AFM-based force spectroscopy in the study of protein folding, especially since this technique is able to circumvent some of the difficulties typically encountered in classical thermal/chemical denaturation studies.

摘要

原子力显微镜(AFM)在生物系统中的应用,除了可以生成高质量且分辨率良好的图像外,还可以通过基于 AFM 的力谱学来研究蛋白质折叠。这种方法在测量分子间和分子内相互作用力方面取得了显著进展,其分辨率可达皮牛顿。基于 AFM 的灵敏度和单个分子的操纵来检测分子之间的特定相互作用力,极大地促进了对蛋白质内部和蛋白质-配体相互作用的理解。除了在解决基本科学问题方面的学术兴趣外,该技术对于阐明几个具有直接生物医学相关性的生物学问题也具有关键意义。力谱学是一种特别适合“机械蛋白”的技术,它可以为单个蛋白质分子和/或结构域提供关键信息。重要的是,它还有可能在单个实验中结合空间和动力学测量。在这里,描述了这种方法的主要原理,然后讨论了在相关蛋白质折叠示例的背景下,在单分子水平上测量相互作用的能力。我们旨在展示基于 AFM 的力谱学在蛋白质折叠研究中的潜力,特别是因为该技术能够规避经典热/化学变性研究中通常遇到的一些困难。

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