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利用荧光去极化动力学研究内在无序蛋白质的构象偏好、结构可塑性、结合及组装

Fluorescence Depolarization Kinetics to Study the Conformational Preference, Structural Plasticity, Binding, and Assembly of Intrinsically Disordered Proteins.

作者信息

Majumdar Anupa, Mukhopadhyay Samrat

机构信息

Centre for Protein Science, Design and Engineering, Department of Biological Sciences, Indian Institute of Science Education and Research (IISER) Mohali, Punjab, India; Department of Chemical Sciences, Indian Institute of Science Education and Research (IISER) Mohali, Punjab, India.

Centre for Protein Science, Design and Engineering, Department of Biological Sciences, Indian Institute of Science Education and Research (IISER) Mohali, Punjab, India; Department of Chemical Sciences, Indian Institute of Science Education and Research (IISER) Mohali, Punjab, India.

出版信息

Methods Enzymol. 2018;611:347-381. doi: 10.1016/bs.mie.2018.09.031. Epub 2018 Nov 3.

Abstract

Fluorescence depolarization kinetics measured by the time-resolved fluorescence anisotropy decay serves as a sensitive and powerful methodology to study the conformational dynamics of macromolecules. This methodology allows us to delineate the different modes of biomolecular motional dynamics including the local, segmental, and global rotational dynamics on the timescale ranging from picoseconds to nanoseconds. In this chapter, we describe the principles and applications of this methodology to obtain unique molecular insights into the intrinsically disordered proteins (IDPs). Fluorescence depolarization kinetics, when performed in a site-specific manner, can offer a reliable tool to monitor the intrinsic backbone torsional dynamics of expanded IDPs and is capable of discerning the conformational preference of IDPs. Additionally, the time-resolved fluorescence anisotropy measurements allow us to investigate the mechanism of binding and assembly of a wide range of IDPs that are involved in crucial function and disease.

摘要

通过时间分辨荧光各向异性衰减测量的荧光去极化动力学是研究大分子构象动力学的一种灵敏且强大的方法。这种方法使我们能够描绘生物分子运动动力学的不同模式,包括从皮秒到纳秒时间尺度上的局部、片段和整体旋转动力学。在本章中,我们描述了该方法的原理和应用,以获得对内在无序蛋白质(IDP)的独特分子见解。以位点特异性方式进行的荧光去极化动力学可以提供一个可靠的工具来监测扩展IDP的内在主链扭转动力学,并能够辨别IDP的构象偏好。此外,时间分辨荧光各向异性测量使我们能够研究参与关键功能和疾病的多种IDP的结合和组装机制。

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