Engelmann Brett W
Department of Human Genetics, The University of Chicago, Chicago, IL, USA.
Methods Mol Biol. 2017;1555:375-394. doi: 10.1007/978-1-4939-6762-9_21.
The Src Homology 2 (SH2) domain family primarily recognizes phosphorylated tyrosine (pY) containing peptide motifs. The relative affinity preferences among competing SH2 domains for phosphopeptide ligands define "specificity space," and underpins many functional pY mediated interactions within signaling networks. The degree of promiscuity exhibited and the dynamic range of affinities supported by individual domains or phosphopeptides is best resolved by a carefully executed and controlled quantitative high-throughput experiment. Here, I describe the fabrication and application of a cellulose-peptide conjugate microarray (CPCMA) platform to the quantitative analysis of SH2 domain specificity space. Included herein are instructions for optimal experimental design with special attention paid to common sources of systematic error, phosphopeptide SPOT synthesis, microarray fabrication, analyte titrations, data capture, and analysis.
Src同源2(SH2)结构域家族主要识别含磷酸化酪氨酸(pY)的肽基序。竞争的SH2结构域对磷酸肽配体的相对亲和力偏好定义了“特异性空间”,并支撑了信号网络中许多由pY介导的功能性相互作用。单个结构域或磷酸肽表现出的混杂程度以及所支持的亲和力动态范围,最好通过精心执行和控制的定量高通量实验来解析。在此,我描述了一种纤维素-肽缀合物微阵列(CPCMA)平台用于SH2结构域特异性空间定量分析的构建及应用。本文包括优化实验设计的说明,特别关注系统误差的常见来源、磷酸肽点合成、微阵列构建、分析物滴定、数据采集和分析。