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通过生物正交标记鉴定和分析组蛋白乙酰转移酶底物。

Identification and Profiling of Histone Acetyltransferase Substrates by Bioorthogonal Labeling.

机构信息

Department of Pharmaceutical and Biomedical Sciences, College of Pharmacy, University of Georgia, Athens, Georgia.

出版信息

Curr Protoc. 2022 Jul;2(7):e497. doi: 10.1002/cpz1.497.

Abstract

Histone acetyltransferases (HATs, also known as lysine acetyltransferases, KATs) catalyze acetylation of their cognate protein substrates using acetyl-CoA (Ac-CoA) as a cofactor and are involved in various physiological and pathological processes. Advances in mass spectrometry-based proteomics have allowed the discovery of thousands of acetylated proteins and the specific acetylated lysine sites. However, due to the rapid dynamics and functional redundancy of HAT activities, and the limitation of using antibodies to capture acetylated lysines, it is challenging to systematically and precisely define both the substrates and sites directly acetylated by a given HAT. Here, we describe a chemoproteomic approach to identify and profile protein substrates of individual HAT enzymes on the proteomic scale. The approach involves protein engineering to enlarge the Ac-CoA binding pocket of the HAT of interest, such that a mutant form is generated that can use functionalized acyl-CoAs as a cofactor surrogate to bioorthogonally label its protein substrates. The acylated protein substrates can then be chemoselectively conjugated either with a fluorescent probe (for imaging detection) or with a biotin handle (for streptavidin pulldown and chemoproteomic identification). This modular chemical biology approach has been successfully implemented to identify protein substrates of p300, GCN5, and HAT1, and it is expected that this method can be applied to profile and identify the sub-acetylomes of many other HAT enzymes. © 2022 Wiley Periodicals LLC. Basic Protocol 1: Labeling HAT protein substrates with azide/alkyne-biotin Alternate Protocol: Labeling protein substrates of HATs with azide/alkyne-TAMRA for in-gel visualization Support Protocol 1: Expression and purification of HAT mutants Support Protocol 2: Synthesis of Ac-CoA surrogates Basic Protocol 2: Streptavidin enrichment of biotinylated HAT substrates Basic Protocol 3: Chemoproteomic identification of HAT substrates Basic Protocol 4: Validation of specific HAT substrates with western blotting.

摘要

组蛋白乙酰转移酶(HATs,也称为赖氨酸乙酰转移酶,KATs)使用乙酰辅酶 A(Ac-CoA)作为辅助因子催化其同源蛋白底物的乙酰化,参与各种生理和病理过程。基于质谱的蛋白质组学的进步使得数千种乙酰化蛋白和特定的乙酰化赖氨酸位点被发现。然而,由于 HAT 活性的快速动态和功能冗余,以及使用抗体捕获乙酰化赖氨酸的限制,系统和精确地定义给定 HAT 直接乙酰化的底物和位点具有挑战性。在这里,我们描述了一种化学生物学方法,用于在蛋白质组学范围内鉴定和分析单个 HAT 酶的蛋白质底物。该方法涉及蛋白质工程,以扩大感兴趣的 HAT 的 Ac-CoA 结合口袋,从而产生一种突变形式,该形式可以使用功能化酰基辅酶 A 作为辅助因子替代物来生物正交标记其蛋白质底物。然后,酰化的蛋白质底物可以通过化学选择性与荧光探针(用于成像检测)或生物素接头(用于链霉亲和素下拉和化学生物学鉴定)缀合。这种模块化的化学生物学方法已成功用于鉴定 p300、GCN5 和 HAT1 的蛋白质底物,预计该方法可用于分析和鉴定许多其他 HAT 酶的亚乙酰组。© 2022 威立出版社。基本方案 1:用叠氮/炔基-生物素标记 HAT 蛋白底物可选方案 1:用叠氮/炔基-TAMRA 标记 HAT 的蛋白质底物用于凝胶内可视化支持方案 1:HAT 突变体的表达和纯化支持方案 2:Ac-CoA 替代物的合成基本方案 2:链霉亲和素富集生物素化 HAT 底物基本方案 3:HAT 底物的化学生物学鉴定基本方案 4:用 Western blot 验证特定的 HAT 底物。

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