Leonard Paul, Hearty Stephen, Ma Hui, O'Kennedy Richard
Biomedical Diagnostics Institute, Dublin City University, Dublin 9, Ireland.
School of Biotechnology, Dublin City University, Dublin 9, Ireland.
Methods Mol Biol. 2017;1485:339-354. doi: 10.1007/978-1-4939-6412-3_17.
The use of optical biosensors for studying macromolecular interactions is gaining increasing popularity. In one study, 1514 papers that involved the application of biosensor data were identified for the year 2009 alone (Rich and Myszka, J Mol Recognit 24:892-914, 2011), the sheer volume and variety of which present a daunting task for the burgeoning biosensor user to accumulate and decipher. This chapter is designed to provide the reader with the tools necessary to prepare, design, and efficiently execute a kinetic experiment on Biacore. It is written to guide the Biacore user through basic theory, system maintenance, and assay setup while also offering some practical tips that we find useful for Biacore-based studies. Many kinetic-based screening assays require rigorous sample preparation and purification prior to analysis. To highlight these procedures, this protocol describes the kinetic characterization of single chain Fv (scFv) antibody fragments from crude bacterial lysates using an antibody affinity capture approach. Even though we specifically describe the capture of HA-tagged scFv antibody fragments to an anti-HA tag monoclonal antibody-immobilized surface prior to kinetic analysis, the same methodologies are universally applicable and can be used for practically any affinity pair and most Biacore systems.
使用光学生物传感器来研究大分子相互作用正变得越来越流行。在一项研究中,仅2009年就鉴定出1514篇涉及生物传感器数据应用的论文(Rich和Myszka,《分子识别杂志》24:892 - 914,2011),其数量之多和种类之繁,给新兴的生物传感器用户积累和解读这些数据带来了艰巨的任务。本章旨在为读者提供在Biacore上准备、设计并有效执行动力学实验所需的工具。本章旨在引导Biacore用户了解基本理论、系统维护和分析方法设置,同时还提供一些我们认为对基于Biacore的研究有用的实用技巧。许多基于动力学的筛选分析在分析之前需要进行严格的样品制备和纯化。为了突出这些程序,本方案描述了使用抗体亲和捕获方法对来自粗细菌裂解物的单链Fv(scFv)抗体片段进行动力学表征。尽管我们具体描述了在动力学分析之前将HA标签的scFv抗体片段捕获到固定有抗HA标签单克隆抗体的表面,但相同的方法普遍适用,可用于几乎任何亲和对和大多数Biacore系统。