Department of Chemical and Biomolecular Engineering, North Carolina State University, Campus Box 7905, Raleigh, NC 27606, USA.
Golden LEAF Biomanufacturing Training and Education Center (BTEC), North Carolina State University, Raleigh, NC 27695, USA.
Int J Mol Sci. 2022 Feb 1;23(3):1691. doi: 10.3390/ijms23031691.
Histone post-translational modifications are small chemical changes to the histone protein structure that have cascading effects on diverse cellular functions. Detecting histone modifications and characterizing their binding partners are critical steps in understanding chromatin biochemistry and have been accessed using common reagents such as antibodies, recombinant assays, and FRET-based systems. High-throughput platforms could accelerate work in this field, and also could be used to engineer de novo histone affinity reagents; yet, published studies on their use with histones have been noticeably sparse. Here, we describe specific experimental conditions that affect binding specificities of post-translationally modified histones in classic protein engineering platforms and likely explain the relative difficulty with histone targets in these platforms. We also show that manipulating avidity of binding interactions may improve specificity of binding.
组蛋白翻译后修饰是组蛋白结构上的微小化学变化,对多种细胞功能具有级联效应。检测组蛋白修饰并描述其结合伴侣是理解染色质生物化学的关键步骤,可以使用常见的试剂如抗体、重组测定和基于 FRET 的系统来实现。高通量平台可以加速该领域的工作,也可以用于工程从头设计组蛋白亲和试剂;然而,关于它们在组蛋白上应用的已发表研究明显较少。在这里,我们描述了影响经典蛋白质工程平台中翻译后修饰组蛋白结合特异性的特定实验条件,这可能解释了这些平台中组蛋白靶标相对困难的原因。我们还表明,改变结合相互作用的亲和力可以提高结合的特异性。