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从小分子到药物制剂的药物发现中的生物物理方法

Biophysical methods in drug discovery from small molecule to pharmaceutical.

作者信息

Holdgate Geoffrey, Geschwindner Stefan, Breeze Alex, Davies Gareth, Colclough Nicola, Temesi David, Ward Lara

机构信息

AstraZeneca R&D, Macclesfield, UK.

出版信息

Methods Mol Biol. 2013;1008:327-55. doi: 10.1007/978-1-62703-398-5_12.

Abstract

Biophysical methods have become established in many areas of drug discovery. Application of these methods was once restricted to a relatively small number of scientists using specialized, low throughput technologies and methods. Now, automated high-throughput instruments are to be found in a growing number of laboratories. Many biophysical methods are capable of measuring the equilibrium binding constants between pairs of molecules crucial for molecular recognition processes, encompassing protein-protein, protein-small molecule, and protein-nucleic acid interactions, and several can be used to measure the kinetic or thermodynamic components controlling these biological processes. For a full characterization of a binding process, determinations of stoichiometry, binding mode, and any conformational changes associated with such interactions are also required. The suite of biophysical methods that are now available represents a powerful toolbox of techniques which can effectively deliver this full characterization.The aim of this chapter is to provide the reader with an overview of the drug discovery process and how biophysical methods, such as surface plasmon resonance (SPR), isothermal titration calorimetry (ITC), nuclear magnetic resonance, mass spectrometry (MS), and thermal unfolding methods can answer specific questions in order to influence project progression and outcomes. The selection of these examples is based upon the experiences of the authors at AstraZeneca, and relevant approaches are highlighted where they have utility in a particular drug discovery scenario.

摘要

生物物理方法已在药物发现的许多领域得到确立。这些方法的应用曾经局限于相对少数使用专门的低通量技术和方法的科学家。如今,越来越多的实验室配备了自动化高通量仪器。许多生物物理方法能够测量分子识别过程中关键分子对之间的平衡结合常数,包括蛋白质 - 蛋白质、蛋白质 - 小分子和蛋白质 - 核酸相互作用,并且有几种方法可用于测量控制这些生物过程的动力学或热力学成分。为了全面表征结合过程,还需要确定化学计量、结合模式以及与此类相互作用相关的任何构象变化。现有的一系列生物物理方法代表了一个强大的技术工具箱,能够有效地提供这种全面表征。本章的目的是向读者概述药物发现过程,以及生物物理方法,如表面等离子体共振(SPR)、等温滴定量热法(ITC)、核磁共振、质谱(MS)和热变性方法如何回答特定问题,从而影响项目进展和结果。这些例子的选择基于阿斯利康作者们的经验,并且在特定药物发现场景中有实用价值的相关方法会被重点强调。

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