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用于测定小分子与核酸相互作用的偏振光谱法——教程

Polarization spectroscopy methods in the determination of interactions of small molecules with nucleic acids - tutorial.

作者信息

Šmidlehner Tamara, Piantanida Ivo, Pescitelli Gennaro

机构信息

Division of Organic Chemistry and Biochemistry, Ruđer Bošković Institute; P. O. Box 180, 10002 Zagreb, Croatia.

Department of Chemistry, University of Pisa, via Moruzzi 13, Pisa, Italy.

出版信息

Beilstein J Org Chem. 2018 Jan 8;14:84-105. doi: 10.3762/bjoc.14.5. eCollection 2018.

Abstract

The structural characterization of non-covalent complexes between nucleic acids and small molecules (ligands) is of a paramount significance to bioorganic research. Highly informative methods about nucleic acid/ligand complexes such as single crystal X-ray diffraction or NMR spectroscopy cannot be performed under biologically compatible conditions and are extensively time consuming. Therefore, in search for faster methods which can be applied to conditions that are at least similar to the naturally occurring ones, a set of polarization spectroscopy methods has shown highly promising results. Electronic circular dichroism (ECD) is the most commonly used method for the characterization of the helical structure of DNA and RNA and their complexes with ligands. Less common but complementary to ECD, is flow-oriented linear dichroism (LD). Other methods such as vibrational CD (VCD) and emission-based methods (FDCD, CPL), can also be used for suitable samples. Despite the popularity of polarization spectroscopy in biophysics, aside several highly focused reviews on the application of these methods to DNA/RNA research, there is no systematic tutorial covering all mentioned methods as a tool for the characterization of adducts between nucleic acids and small ligands. This tutorial aims to help researchers entering the research field to organize experiments accurately and to interpret the obtained data reliably.

摘要

核酸与小分子(配体)之间非共价复合物的结构表征对生物有机研究至关重要。诸如单晶X射线衍射或核磁共振波谱等关于核酸/配体复合物的信息丰富的方法无法在生物相容的条件下进行,而且耗时很长。因此,为了寻找能够应用于至少与自然条件相似的条件下的更快方法,一系列偏振光谱方法已显示出很有前景的结果。电子圆二色光谱(ECD)是表征DNA和RNA的螺旋结构及其与配体复合物的最常用方法。与ECD不太常见但互补的是流动取向线性二色光谱(LD)。其他方法,如振动圆二色光谱(VCD)和基于发射的方法(FDCD、CPL),也可用于合适的样品。尽管偏振光谱在生物物理学中很受欢迎,但除了几篇高度聚焦于这些方法在DNA/RNA研究中的应用的综述外,没有系统的教程涵盖所有上述方法作为表征核酸与小配体之间加合物的工具。本教程旨在帮助刚进入该研究领域的研究人员准确地组织实验并可靠地解释所获得的数据。

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