Histone Lactylation Contributes to Neuropathic Pain by Facilitating m <sup>6</sup> A Reader Protein IGF2BP2 Expression in DRG Sensory Neurons
Abstract
Histone lactylation is a novel lactate-dependent histone mark that plays an important role in regulating gene expression. However, its role in neuropathic pain remains elusive. Here, we report that Histone 3 lysine 18 lactylation (H3K18la) is a key factor in initiating and advancing neuropathic pain. Peripheral nerve injury increased the levels of H3K18la level in injured dorsal root ganglia (DRGs) of mice. This upregulation led to increased binding at the Igf2bp2 CpG island, which in turn activated Igf2bp2 transcription. Increased IGF2BP2 levels subsequently stabilized Cct2 mRNA and upregulated CCT2 protein expression. Pharmacological inhibition of H3K18la activity by injection of 2-DG or knockdown of Igf2bp2 decreased IGF2BP2 levels. This resulted in Cct2 instability in the DRG of CCI male and female mice. Concurrently, mechanical and thermal pain hypersensitivity was attenuated. In contrast, injecting sodium lactate into the uninjured DRG increased H3K18la and IGF2BP2 levels subsequently elevating CCT2 protein and inducing neuropathic pain-like behaviors. Our results reveal that histone lactylation contributes to dysfunctional gene expression in nociceptive pathways, suggesting that targeting histone lactylation could provide a new therapeutic strategy for neuropathic pain.
Article Details
Authors (14)
Qi-Hui Wang
Shan Xie
Ke-Hui Yang
Yu-Xi Guo
Hui-Ying Huang
Si-Yuan Li
Ya Liu
Ying Zeng
Can Wang
Yue Huang
Li Yang
Hong-Jun Wang
Ling-Yun Hao
Zhi-Qiang Pan