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A model to study NMDA receptors in early nervous system development

  • Stony Brook University
  • National Institutes of Health

Research output: Contribution to journalArticlepeer-review

24 Scopus citations

Abstract

N-methyl-D-aspartate receptors (NMDARs) are glutamate-gated ion channels that play critical roles in neuronal development and nervous system function. Here, we developed a model to study NMDARs in early development in zebrafish, by generating CRISPR-mediated lesions in the NMDAR genes, grin1a and grin1b, which encode the obligatory GluN1 subunits. While receptors containing grin1a or grin1b show high Ca2+ permeability, like their mammalian counterpart, grin1a is expressed earlier and more broadly in development than grin1b. Both grin1a2/2 and grin1b2/2 zebrafish are viable. Unlike in rodents, where the grin1 knockout is embryonic lethal, grin1 double-mutant fish (grin1a2/2; grin1b2/2), which lack all NMDAR-mediated synaptic transmission, survive until ~10 d dpf (days post fertilization), providing a unique opportunity to explore NMDAR function during development and in generating behaviors. Many behavioral defects in the grin1 double-mutant larvae, including abnormal evoked responses to light and acoustic stimuli, prey-capture deficits, and a failure to habituate to acoustic stimuli, are replicated by short-term treatment with the NMDAR antagonist MK-801, suggesting that they arise from acute effects of compromised NMDAR-mediated transmission. Other defects, however, such as periods of hyperactivity and alterations in place preference, are not phenocopied by MK-801, suggesting a developmental origin. Together, we have developed a unique model to study NMDARs in the developing vertebrate nervous system.

Original languageEnglish
Pages (from-to)3631-3645
Number of pages15
JournalJournal of Neuroscience
Volume40
Issue number18
DOIs
StatePublished - Apr 29 2020

Keywords

  • CRISPR-Cas9
  • Calcium permeability
  • Habituation
  • Prey-capture
  • Visual acuity
  • Zebrafish

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