Spinal-Specific Super Enhancer in Neuropathic Pain

Author:

Tao Yang,Wang Qi-Hui,Li Xiao-Tong,Liu Ya,Sun Run-Hang,Xu Heng-Jun,Zhang Ming,Li Si-Yuan,Yang Li,Wang Hong-Jun,Hao Ling-YunORCID,Cao Jun-LiORCID,Pan Zhiqiang

Abstract

Dysfunctional gene expression in nociceptive pathways plays a critical role in the development and maintenance of neuropathic pain. Super enhancers (SEs), composed of a large cluster of transcriptional enhancers, are emerging as new players in the regulation of gene expression. However, whether SEs participate in nociceptive responses remains unknown. Here, we report a spinal-specific SE (SS-SE) that regulates chronic constriction injury (CCI)-induced neuropathic pain by drivingNtmt1andPrrx2transcription in dorsal horn neurons. Peripheral nerve injury significantly enhanced the activity of SS-SE and increased the expression of NTMT1 and PRRX2 in the dorsal horn of male mice in a bromodomain-containing protein 4 (BRD4)-dependent manner. Both intrathecal administration of a pharmacological BRD4 inhibitor JQ1 and CRISPR-Cas9-mediated SE deletion abolished the increased NTMT1 and PRRX2 in CCI mice and attenuated their nociceptive hypersensitivities. Furthermore, knocking downNtmt1orPrrx2with siRNA suppressed the injury-induced elevation of phosphorylated extracellular-signal-regulated kinase (p-ERK) and glial fibrillary acidic protein (GFAP) expression in the dorsal horn and alleviated neuropathic pain behaviors. Mimicking the increase in spinalNtmt1orPrrx2in naive mice increased p-ERK and GFAP expression and led to the genesis of neuropathic pain-like behavior. These results redefine our understanding of the regulation of pain-related genes and demonstrate that BRD4-driven increases in SS-SE activity is responsible for the genesis of neuropathic pain through the governance of NTMT1 and PRRX2 expression in dorsal horn neurons. Our findings highlight the therapeutic potential of BRD4 inhibitors for the treatment of neuropathic pain.SIGNIFICANCE STATEMENTSEs drive gene expression by recruiting master transcription factors, cofactors, and RNA polymerase, but their role in the development of neuropathic pain remains unknown. Here, we report that the activity of an SS-SE, located upstream of the genesNtmt1andPrrx2, was elevated in the dorsal horn of mice with neuropathic pain. SS-SE contributes to the genesis of neuropathic pain by driving expression ofNtmt1andPrrx2. Both inhibition of SS-SE with a pharmacological BRD4 inhibitor and genetic deletion of SS-SE attenuated pain hypersensitivities. This study suggests an effective and novel therapeutic strategy for neuropathic pain.

Funder

National Natural Science Foundation of China

Jiangsu Provincial Association of Science and Technology Youth Science and Techanology Talent Recruitment Project

Natural Science Foundation of Jiangsu Province Grant

Natural Science Foundation of Jiangsu Education Department Key Project

Postgraduate Research and Practice Innovation Program of Jiangsu Province Grant

Jiangsu Provincial Doctors of Entrepreneurship and Innovation Program

Publisher

Society for Neuroscience

Subject

General Neuroscience

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