Nature Communications 2015-01-01

Synaptic NMDA receptor activity is coupled to the transcriptional control of the glutathione system.

Paul S Baxter, Karen F S Bell, Philip Hasel, Angela M Kaindl, Michael Fricker, Derek Thomson, Sean P Cregan, Thomas H Gillingwater, Giles E Hardingham

Index: Nat. Commun. 6 , 6761, (2015)

Full Text: HTML

Abstract

How the brain's antioxidant defenses adapt to changing demand is incompletely understood. Here we show that synaptic activity is coupled, via the NMDA receptor (NMDAR), to control of the glutathione antioxidant system. This tunes antioxidant capacity to reflect the elevated needs of an active neuron, guards against future increased demand and maintains redox balance in the brain. This control is mediated via a programme of gene expression changes that boosts the synthesis, recycling and utilization of glutathione, facilitating ROS detoxification and preventing Puma-dependent neuronal apoptosis. Of particular importance to the developing brain is the direct NMDAR-dependent transcriptional control of glutathione biosynthesis, disruption of which can lead to degeneration. Notably, these activity-dependent cell-autonomous mechanisms were found to cooperate with non-cell-autonomous Nrf2-driven support from astrocytes to maintain neuronal GSH levels in the face of oxidative insults. Thus, developmental NMDAR hypofunction and glutathione system deficits, separately implicated in several neurodevelopmental disorders, are mechanistically linked.


Related Compounds

  • Sodium hydroxide
  • sodium chloride
  • Hydrogen peroxide
  • sodium dodecyl sul...
  • 3-Ethyl-2,4-pentan...
  • 4-AMINOPYRIDI...
  • SodiuM bicarbonat...
  • HEPES
  • Glycine
  • SODIUM CHLOR...

Related Articles:

Aptamer-based polyvalent ligands for regulated cell attachment on the hydrogel surface.

2015-04-13

[Biomacromolecules 16(4) , 1382-9, (2015)]

Osmoregulatory bicarbonate secretion exploits H(+)-sensitive haemoglobins to autoregulate intestinal O2 delivery in euryhaline teleosts.

2014-10-01

[J. Comp. Physiol. B, Biochem. Syst. Environ. Physiol. 184(7) , 865-76, (2014)]

Polymerization of affinity ligands on a surface for enhanced ligand display and cell binding.

2014-12-08

[Biomacromolecules 15(12) , 4561-9, (2014)]

Continuous syntheses of Pd@Pt and Cu@Ag core-shell nanoparticles using microwave-assisted core particle formation coupled with galvanic metal displacement.

2014-08-07

[Nanoscale 6(15) , 8720-5, (2014)]

Effect of (2)H and (18)O water isotopes in kinesin-1 gliding assay.

2014-01-01

[PeerJ 2 , e284, (2014)]

More Articles...