dynorphin
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Dynorphins (Dyn) are a class of opioid peptides that arise from the precursor protein prodynorphin. When prodynorphin is cleaved during processing by proprotein convertase 2 (PC2), multiple active peptides are released: dynorphin A, dynorphin B, and α/β-neoendorphin. Depolarization of a neuron containing prodynorphin stimulates PC2 processing, which occurs within synaptic vesicles in the presynaptic terminal. Occasionally, prodynorphin is not fully processed, leading to the release of big dynorphin, a 32-amino acid molecule consisting of both dynorphin A and dynorphin B.
Key facts
- Protein.Name
- prodynorphin
- Protein.caption
- Dynorphin in the κ opioid receptor
- Protein.image
- 3D Dynorphin KOR.png
- Protein.HGNCid
- 8820
- Protein.Symbol
- PDYN
- Protein.EntrezGene
- 5173
- Protein.OMIM
- 131340
- Protein.RefSeq
- NM_024411
- Protein.UniProt
- P01213
- Protein.Chromosome
- 20
- Protein.Arm
- p
- Protein.Band
- ter
- Protein.LocusSupplementaryData
- -p12.2
via Wikipedia infobox
Research
5,234 papers- Dynorphin and its role in alcohol use disorder.Brain research · 2020
- Dynorphin 1-17 biotransformation peptides: properties, challenges and solutions for future therapeutics development.Future medicinal chemistry · 2023
- Dynorphin and epilepsy.Progress in neurobiology · 1996
- Dynorphin/kappa-opioid receptor control of dopamine dynamics: Implications for negative affective states and psychiatric disorders.Brain research · 2019
- Endogenous Opioid Dynorphin Is a Potential Link between Traumatic Brain Injury, Chronic Pain, and Substance Use Disorder.Journal of neurotrauma · 2022
via PubMed
Wikidata facts
Show 2 more facts
- Commons category
- Dynorphins
- exact match
- www.tcdb.org/search/result.php?tc=1.C.89
via Wikidata · CC0
~17 min read
Article
10 sectionsContents
- Production
- Analgesia
- Addiction
- Cocaine
- Stress and depression
- Appetite and circadian rhythms
- Temperature regulation
- Clinical significance
- References
- External links
Dynorphins (Dyn) are a class of opioid peptides that arise from the precursor protein prodynorphin. When prodynorphin is cleaved during processing by proprotein convertase 2 (PC2), multiple active peptides are released: dynorphin A, dynorphin B, and α/β-neoendorphin. Depolarization of a neuron containing prodynorphin stimulates PC2 processing, which occurs within synaptic vesicles in the presynaptic terminal. Occasionally, prodynorphin is not fully processed, leading to the release of big dynorphin, a 32-amino acid molecule consisting of both dynorphin A and dynorphin B.
Dynorphin A, dynorphin B, and big dynorphin all contain a high proportion of basic amino acid residues, in particular lysine and arginine (29.4%, 23.1%, and 31.2% basic residues, respectively), as well as many hydrophobic residues (41.2%, 30.8%, and 34.4% hydrophobic residues, respectively). Although dynorphins are found widely distributed in the CNS, they have the highest concentrations in the hypothalamus, medulla, pons, midbrain, and spinal cord. Dynorphins are stored in large (80–120 nm diameter) dense-core vesicles that are considerably larger than vesicles storing neurotransmitters. These large dense-core vesicles differ from small synaptic vesicles in that a more intense and prolonged stimulus is needed to cause the large vesicles to release their contents into the synaptic cleft. Dense-core vesicle storage is characteristic of opioid peptides storage.