Soo Mark W, Saltzman Arneet L
Department of Molecular Biology, Massachusetts General Hospital, Boston, USA.
Department of Cell and Systems Biology, University of Toronto, Toronto, Canada.
Bio Protoc. 2021 Sep 20;11(18):e4168. doi: 10.21769/BioProtoc.4168.
In the field of chromatin biology, a major goal of understanding the roles of histone post-translational modifications is to identify the proteins and domains that recognize these modifications. Synthetic histone peptides containing one or more modifications are a key tool to probe these interactions in pull-down assays with recombinant proteins or cell lysates. Building on these approaches, the binding specificity of a protein of interest can be screened against many histone peptides in parallel using a peptide array. In this protocol, we describe the expression and purification of a recombinant protein of interest in bacteria, followed by an assay for binding to histone post-translational modifications using a commercially available histone peptide array. The purification uses a versatile dual-tagging and cleavage strategy and equipment commonly available in a molecular biology laboratory. Graphic abstract: Overview of protocol for purifying recombinant protein and hybridizing to a histone peptide array.
在染色质生物学领域,理解组蛋白翻译后修饰作用的一个主要目标是鉴定识别这些修饰的蛋白质和结构域。含有一种或多种修饰的合成组蛋白肽是在与重组蛋白或细胞裂解物的下拉实验中探测这些相互作用的关键工具。基于这些方法,可以使用肽阵列针对许多组蛋白肽并行筛选感兴趣蛋白质的结合特异性。在本方案中,我们描述了在细菌中表达和纯化感兴趣的重组蛋白,随后使用市售的组蛋白肽阵列检测其与组蛋白翻译后修饰的结合。纯化使用了通用的双标签和切割策略以及分子生物学实验室常用的设备。图形摘要:重组蛋白纯化及与组蛋白肽阵列杂交方案概述。