Click here to close
Hello! We notice that you are using Internet Explorer, which is not supported by Xenbase and may cause the site to display incorrectly.
We suggest using a current version of Chrome,
FireFox, or Safari.
J Neurosci
2009 Nov 11;2945:14371-80. doi: 10.1523/JNEUROSCI.2186-09.2009.
Show Gene links
Show Anatomy links
Dynorphin opioid peptides enhance acid-sensing ion channel 1a activity and acidosis-induced neuronal death.
Sherwood TW
,
Askwith CC
.
???displayArticle.abstract???
Acid-sensing ion channel 1a (ASIC1a) promotes neuronal damage during pathological acidosis. ASIC1a undergoes a process called steady-state desensitization in which incremental pH reductions desensitize the channel and prevent activation when the threshold for acid-dependent activation is reached. We find that dynorphin A and big dynorphin limit steady-state desensitization of ASIC1a and acid-activated currents in cortical neurons. Dynorphin potentiation of ASIC1a activity is independent of opioid or bradykinin receptor activation but is prevented in the presence of PcTx1, a peptide which is known to bind the extracellular domain of ASIC1a. This suggests that dynorphins interact directly with ASIC1a to enhance channel activity. Inducing steady-state desensitization prevents ASIC1a-mediated cell death during prolonged acidosis. This neuroprotection is abolished in the presence of dynorphins. Together, these results define ASIC1a as a new nonopioid target for dynorphin action and suggest that dynorphins enhance neuronal damage following ischemia by preventing steady-state desensitization of ASIC1a.
Akil,
Endogenous opioids: biology and function.
1984, Pubmed
Akil,
Endogenous opioids: biology and function.
1984,
Pubmed
Altier,
Opioid, cheating on its receptors, exacerbates pain.
2006,
Pubmed
Andrews,
Levels of endogenous opioids and effects of an opiate antagonist during regional cerebral ischemia in rats.
1988,
Pubmed
Arias,
Amiloride is neuroprotective in an MPTP model of Parkinson's disease.
2008,
Pubmed
Askwith,
Acid-sensing ion channel 2 (ASIC2) modulates ASIC1 H+-activated currents in hippocampal neurons.
2004,
Pubmed
Askwith,
Neuropeptide FF and FMRFamide potentiate acid-evoked currents from sensory neurons and proton-gated DEG/ENaC channels.
2000,
Pubmed
,
Xenbase
Babini,
Alternative splicing and interaction with di- and polyvalent cations control the dynamic range of acid-sensing ion channel 1 (ASIC1).
2002,
Pubmed
,
Xenbase
Bässler,
Molecular and functional characterization of acid-sensing ion channel (ASIC) 1b.
2001,
Pubmed
,
Xenbase
Benson,
Heteromultimers of DEG/ENaC subunits form H+-gated channels in mouse sensory neurons.
2002,
Pubmed
Caudle,
Dynorphin: friend or foe?
2000,
Pubmed
Caudle,
Ifenprodil blocks the excitatory effects of the opioid peptide dynorphin 1-17 on NMDA receptor-mediated currents in the CA3 region of the guinea pig hippocampus.
1998,
Pubmed
Chen,
Interaction of acid-sensing ion channel (ASIC) 1 with the tarantula toxin psalmotoxin 1 is state dependent.
2006,
Pubmed
,
Xenbase
Chen,
Strong modulation by RFamide neuropeptides of the ASIC1b/3 heteromer in competition with extracellular calcium.
2006,
Pubmed
,
Xenbase
Chen,
The opioid peptide dynorphin directly blocks NMDA receptor channels in the rat.
1995,
Pubmed
Chen,
The tarantula toxin psalmotoxin 1 inhibits acid-sensing ion channel (ASIC) 1a by increasing its apparent H+ affinity.
2005,
Pubmed
,
Xenbase
Clausen,
Cerebral acid-base homeostasis after severe traumatic brain injury.
2005,
Pubmed
Cone,
Regional distribution of dynorphin and neo-endorphin peptides in rat brain, spinal cord, and pituitary.
1983,
Pubmed
Coryell,
Restoring Acid-sensing ion channel-1a in the amygdala of knock-out mice rescues fear memory but not unconditioned fear responses.
2008,
Pubmed
Deval,
Effects of neuropeptide SF and related peptides on acid sensing ion channel 3 and sensory neuron excitability.
2003,
Pubmed
Drummond,
Sensing tension: epithelial sodium channel/acid-sensing ion channel proteins in cardiovascular homeostasis.
2008,
Pubmed
Duan,
Upregulation of acid-sensing ion channel ASIC1a in spinal dorsal horn neurons contributes to inflammatory pain hypersensitivity.
2007,
Pubmed
Escoubas,
Isolation of a tarantula toxin specific for a class of proton-gated Na+ channels.
2000,
Pubmed
,
Xenbase
Ettaiche,
Silencing acid-sensing ion channel 1a alters cone-mediated retinal function.
2006,
Pubmed
Faden,
Neurotoxic versus neuroprotective actions of endogenous opioid peptides: implications for treatment of CNS injury.
1996,
Pubmed
Fischli,
Isolation and amino acid sequence analysis of a 4,000-dalton dynorphin from porcine pituitary.
1982,
Pubmed
Friese,
Acid-sensing ion channel-1 contributes to axonal degeneration in autoimmune inflammation of the central nervous system.
2007,
Pubmed
Gao,
Coupling between NMDA receptor and acid-sensing ion channel contributes to ischemic neuronal death.
2005,
Pubmed
Goldstein,
Immunoreactive dynorphin in pituitary and brain.
1980,
Pubmed
Harris,
pH, K+, and PO2 of the extracellular space during ischaemia of primate cerebral cortex.
1987,
Pubmed
Hauser,
Pathobiology of dynorphins in trauma and disease.
2005,
Pubmed
Höllt,
Opioid peptide processing and receptor selectivity.
1986,
Pubmed
Kuzmin,
Big dynorphin, a prodynorphin-derived peptide produces NMDA receptor-mediated effects on memory, anxiolytic-like and locomotor behavior in mice.
2006,
Pubmed
Lai,
Dynorphin uses a non-opioid mechanism to potentiate N-methyl-D-aspartate currents in single rat periaqueductal gray neurons.
1998,
Pubmed
Lai,
Dynorphin A activates bradykinin receptors to maintain neuropathic pain.
2006,
Pubmed
Lai,
Pronociceptive actions of dynorphin via bradykinin receptors.
2008,
Pubmed
Massardier,
A direct non-opiate interaction of dynorphin-(1-13) with the N-methyl-D-aspartate (NMDA) receptor.
1989,
Pubmed
Mazzuca,
A tarantula peptide against pain via ASIC1a channels and opioid mechanisms.
2007,
Pubmed
McIntosh,
Endogenous opioids may mediate secondary damage after experimental brain injury.
1987,
Pubmed
Merg,
Big dynorphin as a putative endogenous ligand for the kappa-opioid receptor.
2006,
Pubmed
Pignataro,
Prolonged activation of ASIC1a and the time window for neuroprotection in cerebral ischaemia.
2007,
Pubmed
Salinas,
The receptor site of the spider toxin PcTx1 on the proton-gated cation channel ASIC1a.
2006,
Pubmed
,
Xenbase
Schwarzer,
30 years of dynorphins--new insights on their functions in neuropsychiatric diseases.
2009,
Pubmed
Sherwood,
Identification of protein domains that control proton and calcium sensitivity of ASIC1a.
2009,
Pubmed
,
Xenbase
Sherwood,
Endogenous arginine-phenylalanine-amide-related peptides alter steady-state desensitization of ASIC1a.
2008,
Pubmed
,
Xenbase
Siesjö,
Molecular mechanisms of acidosis-mediated damage.
1996,
Pubmed
Tan-No,
Intrathecally administered big dynorphin, a prodynorphin-derived peptide, produces nociceptive behavior through an N-methyl-D-aspartate receptor mechanism.
2002,
Pubmed
Tan-No,
Cytotoxic effects of dynorphins through nonopioid intracellular mechanisms.
2001,
Pubmed
Ugawa,
In situ hybridization evidence for the coexistence of ASIC and TRPV1 within rat single sensory neurons.
2005,
Pubmed
von Hanwehr,
Extra- and intracellular pH during near-complete forebrain ischemia in the rat.
1986,
Pubmed
Waldmann,
A proton-gated cation channel involved in acid-sensing.
1997,
Pubmed
,
Xenbase
Walker,
Nonopiate effects of dynorphin and des-Tyr-dynorphin.
1982,
Pubmed
Wemmie,
Acid-sensing ion channel 1 is localized in brain regions with high synaptic density and contributes to fear conditioning.
2003,
Pubmed
Wemmie,
Acid-sensing ion channels: advances, questions and therapeutic opportunities.
2006,
Pubmed
Winkler,
Topical application of dynorphin A (1-17) antiserum attenuates trauma induced alterations in spinal cord evoked potentials, microvascular permeability disturbances, edema formation and cell injury: an experimental study in the rat using electrophysiological and morphological approaches.
2002,
Pubmed
Wollemann,
Non-opioid actions of opioid peptides.
2004,
Pubmed
Wong,
Blocking acid-sensing ion channel 1 alleviates Huntington's disease pathology via an ubiquitin-proteasome system-dependent mechanism.
2008,
Pubmed
Woods,
Decoy peptides that bind dynorphin noncovalently prevent NMDA receptor-mediated neurotoxicity.
2006,
Pubmed
,
Xenbase
Xiong,
Neuroprotection in ischemia: blocking calcium-permeable acid-sensing ion channels.
2004,
Pubmed
Xiong,
Acid sensing ion channels--novel therapeutic targets for ischemic brain injury.
2007,
Pubmed
Zhang,
Kappa-opioid receptor selectivity for ischemic neuroprotection with BRL 52537 in rats.
2003,
Pubmed
Ziemann,
Seizure termination by acidosis depends on ASIC1a.
2008,
Pubmed