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设计表观基因组编辑工具:考虑生化特性和基因座特异性。

Designing Epigenome Editors: Considerations of Biochemical and Locus Specificities.

机构信息

Department of Chemical and Biomolecular Engineering, North Carolina State University, Raleigh, NC, USA.

出版信息

Methods Mol Biol. 2024;2842:23-55. doi: 10.1007/978-1-0716-4051-7_2.

Abstract

The advent of locus-specific protein recruitment technologies has enabled a new class of studies in chromatin biology. Epigenome editors (EEs) enable biochemical modifications of chromatin at almost any specific endogenous locus. Their locus-specificity unlocks unique information including the functional roles of distinct modifications at specific genomic loci. Given the growing interest in using these tools for biological and translational studies, there are many specific design considerations depending on the scientific question or clinical need. Here, we present and discuss important design considerations and challenges regarding the biochemical and locus specificities of epigenome editors. These include how to: account for the complex biochemical diversity of chromatin; control for potential interdependency of epigenome editors and their resultant modifications; avoid sequestration effects; quantify the locus specificity of epigenome editors; and improve locus-specificity by considering concentration, affinity, avidity, and sequestration effects.

摘要

基因座特异性蛋白募集技术的出现,使染色质生物学领域出现了一类新的研究。表观基因组编辑(EE)使几乎任何特定的内源性基因座的染色质都能进行生化修饰。它们的基因座特异性提供了独特的信息,包括特定基因组基因座上不同修饰的功能作用。鉴于人们越来越有兴趣将这些工具用于生物和转化研究,根据科学问题或临床需求,有许多具体的设计考虑因素。在这里,我们介绍和讨论了关于表观基因组编辑的生化和基因座特异性的重要设计考虑因素和挑战。这些包括如何:考虑到染色质复杂的生化多样性;控制表观基因组编辑及其产生的修饰之间潜在的相互依赖性;避免隔离效应;量化表观基因组编辑的基因座特异性;并通过考虑浓度、亲和力、亲合力和隔离效应来提高基因座特异性。

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