| Literature DB >> 27991902 |
Xin Huang1, Paul L Shaffer1, Shawn Ayube1, Howard Bregman2, Hao Chen3, Sonya G Lehto4, Jason A Luther5, David J Matson5, Stefan I McDonough5, Klaus Michelsen6, Matthew H Plant6, Stephen Schneider5, Jeffrey R Simard5, Yohannes Teffera7, Shuyan Yi2, Maosheng Zhang4, Erin F DiMauro2, Jacinthe Gingras5.
Abstract
Current therapies to treat persistent pain and neuropathic pain are limited by poor efficacy, side effects and risk of addiction. Here, we present a novel class of potent selective, central nervous system (CNS)-penetrant potentiators of glycine receptors (GlyRs), ligand-gated ion channels expressed in the CNS. AM-1488 increased the response to exogenous glycine in mouse spinal cord and significantly reversed mechanical allodynia induced by nerve injury in a mouse model of neuropathic pain. We obtained an X-ray crystal structure of human homopentameric GlyRα3 in complex with AM-3607, a potentiator of the same class with increased potency, and the agonist glycine, at 2.6-Å resolution. AM-3607 binds a novel allosteric site between subunits, which is adjacent to the orthosteric site where glycine binds. Our results provide new insights into the potentiation of cysteine-loop receptors by positive allosteric modulators and hold promise in structure-based design of GlyR modulators for the treatment of neuropathic pain.Entities:
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Year: 2016 PMID: 27991902 DOI: 10.1038/nsmb.3329
Source DB: PubMed Journal: Nat Struct Mol Biol ISSN: 1545-9985 Impact factor: 15.369