Author:
Liu Meng,Zhang Su-Bo,Luo Yu-Xuan,Yang Yan-Ling,Zhang Xiang-Zhong,Li Bo,Meng Yan,Chen Yuan-Jie,Guo Rui-Xian,Xiong Yuan-Chang,Xin Wen-Jun,Li Dai
Abstract
Abstract
Background
The major dose-limiting toxicity of paclitaxel, one of the most commonly used drugs to treat solid tumor, is painful neuropathy. However, the molecular mechanisms underlying paclitaxel-induced painful neuropathy are largely unclarified.
Methods
Paw withdrawal threshold was measured in the rats following intraperitoneal injection of paclitaxel. The qPCR, western blotting, protein or chromatin immunoprecipitation, ChIP-seq identification of NFATc2 binding sites, and microarray analysis were performed to explore the molecular mechanism.
Results
We found that paclitaxel treatment increased the nuclear expression of NFATc2 in the spinal dorsal horn, and knockdown of NFATc2 with NFATc2 siRNA significantly attenuated the mechanical allodynia induced by paclitaxel. Further binding site analysis utilizing ChIP-seq assay combining with gene expression profile revealed a shift of NFATc2 binding site closer to TTS of target genes in dorsal horn after paclitaxel treatment.
We further found that NFATc2 occupancy may directly upregulate the chemokine CXCL14 expression in dorsal horn, which was mediated by enhanced interaction between NFATc2 and p300 and consequently increased acetylation of histone H4 in CXCL14 promoter region. Also, knockdown of CXCL14 in dorsal horn significantly attenuated mechanical allodynia induced by paclitaxel.
Conclusion
These results suggested that enhanced interaction between p300 and NFATc2 mediated the epigenetic upregulation of CXCL14 in the spinal dorsal horn, which contributed to the chemotherapeutic paclitaxel-induced chronic pain.
Funder
National Natural Science Foundation of China
Scientific Research Program of Shanghai Municipal Health Commission
Scientific Research Program of Shanghai Health and Family Planning Commission
Natural Science Foundation of Shanghai
Natural Science Foundation of Guangdong Province
2018 High-level Health Teams of Zhuhai
Publisher
Springer Science and Business Media LLC
Subject
Cellular and Molecular Neuroscience,Neurology,Immunology,General Neuroscience
Cited by
15 articles.
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