Development of Lysine Crotonyl‐Mimic Probe to Covalently Identify H3K27Cr Interacting Proteins

Author:

Guo Xiaochun1,Wang Yuena1,An Yuhao2,Liu Zhihong2,Liu Jianbo2,Chen Jiaxin2,Zhan Mei‐miao1,Liang Mingcha2,Hou Zhanfeng1,Wan Chuan1,Yin Feng2,Wang Rui2,Li Zigang12ORCID

Affiliation:

1. State Key Laboratory of Chemical Oncogenomics, Guangdong Provincial Key Laboratory of Chemical Genomics Peking University Shenzhen Graduate School Shenzhen 518055 P.R. China

2. Pingshan translational medicine center, Shenzhen Bay Laboratory Shenzhen 518118 P.R. China

Abstract

AbstractHistone lysine crotonylation (Kcr) is one newly discovered acylation modification and regulates numerous pathophysiological processes. The binding affinity between Kcr and its interacting proteins is generally weak, which makes it difficult to effectively identify Kcr‐interacting partners. Changing the amide of crotonyl to an ester increased reactivity with proximal cysteines and retained specificity for Kcr antibody. The probe “H3g27Cr” was designed by incorporating the ester functionality into a H3K27 peptide. Using this probe, multiple Kcr‐interacting partners including STAT3 were successfully identified, and this has not been reported previously. Further experiments suggested that STAT3 possibly could form complexes with Histone deacetylase HDACs to downregulate the acetylation and crotonylation of Histone H3K27. Our unique design provided intriguing tools to further explore Kcr‐interacting proteins and elucidate their working mechanisms.

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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