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Zinc is abundant in the central nervous system and regulates pain, but the underlying mechanisms are unknown. In vitro studies have shown that extracellular zinc modulates a plethora of signaling membrane proteins, including NMDA receptors containing the NR2A subunit, which display exquisite zinc sensitivity. We created NR2A-H128S knock-in mice to investigate whether Zn2+-NR2A interaction influences pain control. In these mice, high-affinity (nanomolar) zinc inhibition of NMDA currents was lost in the hippocampus and spinal cord. Knock-in mice showed hypersensitivity to radiant heat and capsaicin, and developed enhanced allodynia in inflammatory and neuropathic pain models. Furthermore, zinc-induced analgesia was completely abolished under both acute and chronic pain conditions. Our data establish that zinc is an endogenous modulator of excitatory neurotransmission in vivo and identify a new mechanism in pain processing that relies on NR2A NMDA receptors. The study also potentially provides a molecular basis for the pain-relieving effects of dietary zinc supplementation.
Al-Hallaq,
NMDA di-heteromeric receptor populations and associated proteins in rat hippocampus.
2007, Pubmed
Al-Hallaq,
NMDA di-heteromeric receptor populations and associated proteins in rat hippocampus.
2007,
Pubmed Basbaum,
Cellular and molecular mechanisms of pain.
2009,
Pubmed Boyce,
Selective NMDA NR2B antagonists induce antinociception without motor dysfunction: correlation with restricted localisation of NR2B subunit in dorsal horn.
1999,
Pubmed Cole,
Elimination of zinc from synaptic vesicles in the intact mouse brain by disruption of the ZnT3 gene.
1999,
Pubmed Danscher,
Inhibitory zinc-enriched terminals in mouse spinal cord.
2001,
Pubmed Drdla,
Long-term potentiation at C-fibre synapses by low-level presynaptic activity in vivo.
2008,
Pubmed Fayyazuddin,
Four residues of the extracellular N-terminal domain of the NR2A subunit control high-affinity Zn2+ binding to NMDA receptors.
2000,
Pubmed
,
Xenbase Frederickson,
Importance of zinc in the central nervous system: the zinc-containing neuron.
2000,
Pubmed Frederickson,
The neurobiology of zinc in health and disease.
2005,
Pubmed Gaveriaux-Ruff,
Genetic ablation of delta opioid receptors in nociceptive sensory neurons increases chronic pain and abolishes opioid analgesia.
2011,
Pubmed Gielen,
Mechanism of differential control of NMDA receptor activity by NR2 subunits.
2009,
Pubmed Hambidge,
Zinc deficiency: a special challenge.
2007,
Pubmed Hatton,
Modulation of triheteromeric NMDA receptors by N-terminal domain ligands.
2005,
Pubmed
,
Xenbase Head,
Peripheral neuropathy: pathogenic mechanisms and alternative therapies.
2006,
Pubmed Hirzel,
Hyperekplexia phenotype of glycine receptor alpha1 subunit mutant mice identifies Zn(2+) as an essential endogenous modulator of glycinergic neurotransmission.
2006,
Pubmed Hu,
Zinc activates damage-sensing TRPA1 ion channels.
2009,
Pubmed Jo,
Depletion of vesicular zinc in dorsal horn of spinal cord causes increased neuropathic pain in mice.
2008,
Pubmed Kodirov,
Synaptically released zinc gates long-term potentiation in fear conditioning pathways.
2006,
Pubmed Larson,
Manipulations of zinc in the spinal cord, by intrathecal injection of zinc chloride, disodium-calcium-EDTA, or dipicolinic acid, alter nociceptive activity in mice.
1997,
Pubmed Latremoliere,
Central sensitization: a generator of pain hypersensitivity by central neural plasticity.
2009,
Pubmed Le Bars,
Animal models of nociception.
2001,
Pubmed Liu,
Zinc alleviates thermal hyperalgesia due to partial nerve injury.
1999,
Pubmed Low,
Molecular determinants of coordinated proton and zinc inhibition of N-methyl-D-aspartate NR1/NR2A receptors.
2000,
Pubmed
,
Xenbase Ma,
Localization of N-methyl-D-aspartate NR2B subunits on primary sensory neurons that give rise to small-caliber sciatic nerve fibers in rats.
2000,
Pubmed Ma,
The effects of Zn2+ on long-term potentiation of C fiber-evoked potentials in the rat spinal dorsal horn.
2001,
Pubmed Matsumoto,
Parathyroid hormone 2 receptor is a functional marker of nociceptive myelinated fibers responsible for neuropathic pain.
2010,
Pubmed Miledi,
Expression of functional neurotransmitter receptors in Xenopus oocytes after injection of human brain membranes.
2002,
Pubmed
,
Xenbase Mony,
Allosteric modulators of NR2B-containing NMDA receptors: molecular mechanisms and therapeutic potential.
2009,
Pubmed Paoletti,
Zinc at glutamatergic synapses.
2009,
Pubmed Paoletti,
High-affinity zinc inhibition of NMDA NR1-NR2A receptors.
1997,
Pubmed
,
Xenbase Paoletti,
Molecular organization of a zinc binding n-terminal modulatory domain in a NMDA receptor subunit.
2000,
Pubmed
,
Xenbase Rauner,
Triheteromeric NR1/NR2A/NR2B receptors constitute the major N-methyl-D-aspartate receptor population in adult hippocampal synapses.
2011,
Pubmed Safieh-Garabedian,
Zinc reduces the hyperalgesia and upregulation of NGF and IL-1 beta produced by peripheral inflammation in the rat.
1996,
Pubmed Sakurada,
The capsaicin test in mice for evaluating tachykinin antagonists in the spinal cord.
1992,
Pubmed Sandkühler,
Understanding LTP in pain pathways.
2007,
Pubmed Scherrer,
Knockin mice expressing fluorescent delta-opioid receptors uncover G protein-coupled receptor dynamics in vivo.
2006,
Pubmed Sendur,
The relationship between serum trace element levels and clinical parameters in patients with fibromyalgia.
2008,
Pubmed Sensi,
Zinc in the physiology and pathology of the CNS.
2009,
Pubmed Smart,
Zn2+ ions: modulators of excitatory and inhibitory synaptic activity.
2004,
Pubmed Svensson,
Spinal p38 MAP kinase is necessary for NMDA-induced spinal PGE(2) release and thermal hyperalgesia.
2003,
Pubmed Traynelis,
Glutamate receptor ion channels: structure, regulation, and function.
2010,
Pubmed Ueno,
Mossy fiber Zn2+ spillover modulates heterosynaptic N-methyl-D-aspartate receptor activity in hippocampal CA3 circuits.
2002,
Pubmed Vardeh,
COX2 in CNS neural cells mediates mechanical inflammatory pain hypersensitivity in mice.
2009,
Pubmed Velázquez,
The distribution of zinc selenite and expression of metallothionein-III mRNA in the spinal cord and dorsal root ganglia of the rat suggest a role for zinc in sensory transmission.
1999,
Pubmed Vogt,
The actions of synaptically released zinc at hippocampal mossy fiber synapses.
2000,
Pubmed Woolf,
Neuronal plasticity: increasing the gain in pain.
2000,
Pubmed Yaksh,
The spinal biology in humans and animals of pain states generated by persistent small afferent input.
1999,
Pubmed Yeomans,
Nociceptive responses to high and low rates of noxious cutaneous heating are mediated by different nociceptors in the rat: behavioral evidence.
1996,
Pubmed Yoshida,
Clinical study of tongue pain: Serum zinc, vitamin B12, folic acid, and copper concentrations, and systemic disease.
2010,
Pubmed