4.8 Article

M4 Muscarinic Receptor Signaling Ameliorates Striatal Plasticity Deficits in Models of L-DOPA-Induced Dyskinesia

期刊

NEURON
卷 88, 期 4, 页码 762-773

出版社

CELL PRESS
DOI: 10.1016/j.neuron.2015.10.039

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资金

  1. Michael J. Fox Foundation
  2. NIH [NS034696, MH074866, DA023252, MH073676, NS071669]
  3. JPB Foundation
  4. USAMRAA [W81XWH-09-1-0402]
  5. NIH Intramural Research Program
  6. Association France Parkinson
  7. Foundation de France
  8. LABEX BRAIN [ANR-10-LABX-43]
  9. Swedish governmental [43301-ALF]
  10. Basal Ganglia Disorders Linnaeus Consortium (BAGADILICO)
  11. Swedish Research Council
  12. Swedish Foundation for International Cooperation in Research and Higher Education (STINT)
  13. Olle Engkvist Foundation
  14. AstraZeneca

向作者/读者索取更多资源

A balanced interaction between dopaminergic and cholinergic signaling in the striatum is critical to goal-directed behavior. But how this interaction modulates corticostriatal synaptic plasticity underlying learned actions remains unclear-particularly in direct-pathway spiny projection neurons (dSPNs). Our studies show that in dSPNs, endogenous cholinergic signaling through M4 muscarinic receptors (M4Rs) promoted long-term depression of corticostriatal glutamatergic synapses, by suppressing regulator of G protein signaling type 4 (RGS4) activity, and blocked D1 dopamine receptor dependent long-term potentiation (LTP). Furthermore, in a mouse model of L-3,4-dihydroxyphenylalanine (L-DOPA)induced dyskinesia (LID) in Parkinson's disease (PD), boosting M4R signaling with positive allosteric modulator (PAM) blocked aberrant LTP in dSPNs, enabled LTP reversal, and attenuated dyskinetic behaviors. An M4R PAM also was effective in a primate LID model. Taken together, these studies identify an important signaling pathway controlling striatal synaptic plasticity and point to a novel pharmacological strategy for alleviating LID in PD patients.

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