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Repurposing cancer drugs identifies kenpaullone which ameliorates pathologic pain in preclinical models via normalization of inhibitory neurotransmission.

Publication ,  Journal Article
Yeo, M; Chen, Y; Jiang, C; Chen, G; Wang, K; Chandra, S; Bortsov, A; Lioudyno, M; Zeng, Q; Wang, P; Wang, Z; Busciglio, J; Ji, R-R; Liedtke, W
Published in: Nature communications
October 2021

Inhibitory GABA-ergic neurotransmission is fundamental for the adult vertebrate central nervous system and requires low chloride concentration in neurons, maintained by KCC2, a neuroprotective ion transporter that extrudes intracellular neuronal chloride. To identify Kcc2 gene expression‑enhancing compounds, we screened 1057 cell growth-regulating compounds in cultured primary cortical neurons. We identified kenpaullone (KP), which enhanced Kcc2/KCC2 expression and function in cultured rodent and human neurons by inhibiting GSK3ß. KP effectively reduced pathologic pain-like behavior in mouse models of nerve injury and bone cancer. In a nerve-injury pain model, KP restored Kcc2 expression and GABA-evoked chloride reversal potential in the spinal cord dorsal horn. Delta-catenin, a phosphorylation-target of GSK3ß in neurons, activated the Kcc2 promoter via KAISO transcription factor. Transient spinal over-expression of delta-catenin mimicked KP analgesia. Our findings of a newly repurposed compound and a novel, genetically-encoded mechanism that each enhance Kcc2 gene expression enable us to re-normalize disrupted inhibitory neurotransmission through genetic re-programming.

Duke Scholars

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Published In

Nature communications

DOI

EISSN

2041-1723

ISSN

2041-1723

Publication Date

October 2021

Volume

12

Issue

1

Start / End Page

6208

Related Subject Headings

  • gamma-Aminobutyric Acid
  • Transcription Factors
  • Synaptic Transmission
  • Symporters
  • Spinal Cord Dorsal Horn
  • Rats
  • Neurons
  • Neuralgia
  • Mice
  • Indoles
 

Citation

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Yeo, M., Chen, Y., Jiang, C., Chen, G., Wang, K., Chandra, S., … Liedtke, W. (2021). Repurposing cancer drugs identifies kenpaullone which ameliorates pathologic pain in preclinical models via normalization of inhibitory neurotransmission. Nature Communications, 12(1), 6208. https://doi.org/10.1038/s41467-021-26270-3
Yeo, Michele, Yong Chen, Changyu Jiang, Gang Chen, Kaiyuan Wang, Sharat Chandra, Andrey Bortsov, et al. “Repurposing cancer drugs identifies kenpaullone which ameliorates pathologic pain in preclinical models via normalization of inhibitory neurotransmission.Nature Communications 12, no. 1 (October 2021): 6208. https://doi.org/10.1038/s41467-021-26270-3.
Yeo, Michele, et al. “Repurposing cancer drugs identifies kenpaullone which ameliorates pathologic pain in preclinical models via normalization of inhibitory neurotransmission.Nature Communications, vol. 12, no. 1, Oct. 2021, p. 6208. Epmc, doi:10.1038/s41467-021-26270-3.
Yeo M, Chen Y, Jiang C, Chen G, Wang K, Chandra S, Bortsov A, Lioudyno M, Zeng Q, Wang P, Wang Z, Busciglio J, Ji R-R, Liedtke W. Repurposing cancer drugs identifies kenpaullone which ameliorates pathologic pain in preclinical models via normalization of inhibitory neurotransmission. Nature communications. 2021 Oct;12(1):6208.

Published In

Nature communications

DOI

EISSN

2041-1723

ISSN

2041-1723

Publication Date

October 2021

Volume

12

Issue

1

Start / End Page

6208

Related Subject Headings

  • gamma-Aminobutyric Acid
  • Transcription Factors
  • Synaptic Transmission
  • Symporters
  • Spinal Cord Dorsal Horn
  • Rats
  • Neurons
  • Neuralgia
  • Mice
  • Indoles