A circular engineered sortase for interrogating histone H3 in chromatin

Samuel D Whedon, Kwangwoon Lee, Zhipeng A Wang, Emily Zahn, Congcong Lu, Maheeshi Yapa Abeywardana, Louise Fairall, Eunju Nam, Sarah Dubois-Coyne, Pablo De Ioannes, Xinlei Sheng, Adelina Andrei, Emily Lundberg, Jennifer Jiang, Karim-Jean D Armache, Yingming Zhao, John W R Schwabe, Mingxuan Wu, Benjamin Garcia, P. A. Cole
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Abstract

Reversible modification of the histone H3 N-terminal tail is critical in regulating chromatin structure, gene expression, and cell states, while its dysregulation contributes to disease pathogenesis. Understanding the crosstalk between H3 tail modifications in nucleosomes constitutes a central challenge in epigenetics. Here we describe an engineered sortase transpeptidase, cW11, that displays highly favorable properties for introducing scarless H3 tails onto nucleosomes. This approach significantly accelerates the production of both symmetrically and asymmetrically modified nucleosomes. We demonstrate the utility of asymmetrically modified nucleosomes produced in this way in dissecting the impact of multiple modifications on eraser enzyme processing and molecular recognition by a reader protein. Moreover, we show that cW11 sortase is very effective at cutting and tagging histone H3 tails from endogenous histones, facilitating multiplex cut-and-paste middle down proteomics with tandem mass tags. This cut-and-paste proteomics approach permits the quantitative analysis of histone H3 modification crosstalk after treatment with different histone deacetylase inhibitors. We propose that these chemoenzymatic tail isolation and modification strategies made possible with cW11 sortase will broadly power epigenetics discovery and therapeutic development.
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用于检测染色质中组蛋白 H3 的环形工程分选酶
组蛋白 H3 N 端尾部的可逆修饰对调节染色质结构、基因表达和细胞状态至关重要,而其失调则会导致疾病的发生。了解核小体中 H3 尾部修饰之间的相互影响是表观遗传学的核心挑战。在这里,我们描述了一种工程分选酶转肽酶 cW11,它在将无痕 H3 尾引入核小体方面表现出非常有利的特性。这种方法大大加快了对称和非对称修饰核小体的产生。我们展示了用这种方法生产的非对称修饰核小体在剖析多种修饰对橡皮擦酶处理和阅读蛋白分子识别的影响方面的实用性。此外,我们还发现 cW11 分选酶能非常有效地从内源性组蛋白中切割和标记组蛋白 H3 尾部,从而促进带有串联质量标记的多重切割和粘贴中间向下蛋白质组学。这种切割和粘贴蛋白质组学方法允许对不同组蛋白去乙酰化酶抑制剂处理后的组蛋白 H3 修饰串扰进行定量分析。我们认为,利用 cW11 分选酶实现的这些化学酶尾分离和修饰策略将广泛促进表观遗传学的发现和治疗方法的开发。
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