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◆ Journal of the American Chemical Society2026-08-12

Chemical Proteomic Profiling of the Histaminylation Proteome in Cancer Cells Unveils Uncharted Epigenetic Marks on Core Histones.

Xingyu Ma, Anne A Leaman, Zeng Lin, Huapeng Li, Zhengjun Cai, Qianyue Wang, Kaiwaan Dalal, Md Shahadat Hossain, Venkatesh P Thirumalaikumar, Zhihong Wang, Valerie P O'Brien, W Andy Tao, Qingfei Zheng

原始摘要(英文原文)· Original abstract
Histamine is a key signaling molecule in pathophysiology that can exhibit significant regulatory roles in diverse health and disease states. Besides the well-studied noncovalent interactions between histamine and its receptors, protein histaminylation is a recently discovered mechanism of action through which histamine regulates cellular signaling pathways in a covalent modification manner. Histaminylation is an emerging protein post-translational modification (PTM), where an isopeptide bond is formed between the histamine primary amine and the γ-carboxyl group of glutamine through a transamidation reaction catalyzed by transglutaminase 2 (TGM2). However, due to the lack of efficient pan-specific antibodies targeting histaminylated glutamine, the histaminylation proteome in cells remains poorly explored. Here, we report the design and development of a novel Nτ-propargylated histamine (Nτ-PH) probe as well as its successful application in chemical proteomic profiling of the histaminylation proteome in cancer cells. Notably, new TGM2-catalyzed epigenetic marks on core histones, e.g., H2AX-Q84 and Q104 histaminylation, have been identified from cancer cells and verified. Lastly, the crosstalk between H2AX histaminylation and γH2AX formation was discovered in this study, suggesting that TGM2-mediated histaminylation plays a critical role in DNA damage responses.
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Chemical Proteomic Profiling of the Histaminylation Proteome in Cancer Cells Unveils Uncharted Epigenetic Marks on Core Histones. — 科研速览 Science Skim