A feedback loop driven by H3K9 lactylation and HDAC2 in endothelial cells regulates VEGF-induced angiogenesis

Author:

Fan Wei,Zeng Shuhao,Wang Xiaotang,Wang Guoqing,Liao Dan,Li Ruonan,He Siyuan,Li Wanqian,Huang Jiaxing,Li Xingran,Liu Jiangyi,Li Na,Hou ShengpingORCID

Abstract

Abstract Background Vascular endothelial growth factor (VEGF) is one of the most powerful proangiogenic factors and plays an important role in multiple diseases. Increased glycolytic rates and lactate accumulation are associated with pathological angiogenesis. Results Here, we show that a feedback loop between H3K9 lactylation (H3K9la) and histone deacetylase 2 (HDAC2) in endothelial cells drives VEGF-induced angiogenesis. We find that the H3K9la levels are upregulated in endothelial cells in response to VEGF stimulation. Pharmacological inhibition of glycolysis decreases H3K9 lactylation and attenuates neovascularization. CUT& Tag analysis reveals that H3K9la is enriched at the promoters of a set of angiogenic genes and promotes their transcription. Interestingly, we find that hyperlactylation of H3K9 inhibits expression of the lactylation eraser HDAC2, whereas overexpression of HDAC2 decreases H3K9 lactylation and suppresses angiogenesis. Conclusions Collectively, our study illustrates that H3K9la is important for VEGF-induced angiogenesis, and interruption of the H3K9la/HDAC2 feedback loop may represent a novel therapeutic method for treating pathological neovascularization.

Funder

National Natural Science Foundation of China

Beijing Municipal Public Welfare Development and Reform Pilot Project for Medical Research Institutes

National Key Clinical Specialties Construction Program of China, Chongqing Branch of National Clinical Research Center for Ocular Diseases and Chongqing Key Laboratory of Ophthalmology

Publisher

Springer Science and Business Media LLC

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1. Lactate/lactylation in ocular development and diseases;Trends in Molecular Medicine;2024-07

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