Allosteric regulation in NMDA receptors revealed by the genetically encoded photo-cross-linkers

Sci Rep. 2016 Oct 7:6:34751. doi: 10.1038/srep34751.

Abstract

Allostery is essential to neuronal receptor function, but its transient nature poses a challenge for characterization. The N-terminal domains (NTDs) distinct from ligand binding domains are a major locus for allosteric regulation of NMDA receptors (NMDARs), where different modulatory binding sites have been observed. The inhibitor ifenprodil, and related phenylethanoamine compounds specifically targeting GluN1/GluN2B NMDARs have neuroprotective activity. However, whether they use differential structural pathways than the endogenous inhibitor Zn2+ for regulation is unknown. We applied genetically encoded unnatural amino acids (Uaas) and monitored the functional changes in living cells with photo-cross-linkers specifically incorporated at the ifenprodil binding interface between GluN1 and GluN2B subunits. We report constraining the NTD domain movement, by a light induced crosslinking bond that introduces minimal perturbation to the ligand binding, specifically impedes the transduction of ifenprodil but not Zn2+ inhibition. Subtle distance changes reveal interfacial flexibility and NTD rearrangements in the presence of modulators. Our results present a much richer dynamic picture of allostery than conventional approaches targeting the same interface, and highlight key residues that determine functional and subtype specificity of NMDARs. The light-sensitive mutant neuronal receptors provide complementary tools to the photo-switchable ligands for opto-neuropharmacology.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adenosine Triphosphate / metabolism*
  • Allosteric Regulation
  • Amino Acids / genetics*
  • Amino Acids / pharmacology
  • Animals
  • Binding Sites
  • Cross-Linking Reagents / pharmacology*
  • Ligands
  • Models, Molecular
  • Mutation
  • Piperidines / pharmacology
  • Protein Binding
  • Protein Conformation
  • Protein Multimerization
  • Receptors, Glutamate / chemistry
  • Receptors, Glutamate / genetics
  • Receptors, Glutamate / metabolism
  • Receptors, N-Methyl-D-Aspartate / chemistry
  • Receptors, N-Methyl-D-Aspartate / genetics
  • Receptors, N-Methyl-D-Aspartate / metabolism*
  • Xenopus Proteins / chemistry
  • Xenopus Proteins / genetics
  • Xenopus Proteins / metabolism
  • Xenopus laevis
  • Zinc / metabolism*

Substances

  • Amino Acids
  • Cross-Linking Reagents
  • Ligands
  • NR2B NMDA receptor
  • Piperidines
  • Receptors, Glutamate
  • Receptors, N-Methyl-D-Aspartate
  • Xenopus Proteins
  • nodal1 protein, Xenopus
  • Adenosine Triphosphate
  • Zinc
  • ifenprodil