Opioid peptide

Class of peptides that bind to opioid receptors From Wikipedia, the free encyclopedia

Opioid peptide

Opioid peptides or opiate peptides are peptides that bind to opioid receptors in the brain; opiates and opioids mimic the effect of these peptides. Such peptides may be produced by the body itself, for example endorphins. The effects of these peptides vary, but they all resemble those of opiates. Brain opioid peptide systems are known to play an important role in motivation, emotion, attachment behaviour, the response to stress and pain, control of food intake, and the rewarding effects of alcohol and nicotine.

Quick Facts Vertebrate endogenous opioids neuropeptide, Identifiers ...
Vertebrate endogenous opioids neuropeptide
Identifiers
SymbolOpiods_neuropep
PfamPF01160
InterProIPR006024
PROSITEPDOC00964
Available protein structures:
Pfam  structures / ECOD  
PDBRCSB PDB; PDBe; PDBj
PDBsumstructure summary
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Structural correlation between met-enkephalin, an opioid peptide (left), and morphine, an opiate drug (right)

Opioid-like peptides may also be absorbed from partially digested food (casomorphins, exorphins, and rubiscolins). Opioid peptides from food typically have lengths between 4–8 amino acids. Endogenous opioids are generally much longer.1

Opioid peptides are released by post-translational proteolytic cleavage of precursor proteins. The precursors consist of the following components: a signal sequence that precedes a conserved region of about 50 residues; a variable-length region; and the sequence of the neuropeptides themselves. Sequence analysis reveals that the conserved N-terminal region of the precursors contains 6 cysteines, which are probably involved in disulfide bond formation. It is speculated that this region might be important for neuropeptide processing.[1]

Endogenous

Summarize
Perspective

The human genome contains several homologous genes that are known to code for endogenous opioid peptides.

While not peptides, codeine and morphine are also produced in the human body.[6][7]

More information Amino acid sequence, target(s) ...
Endogenous opioid peptides and their receptors
Opioid peptide Amino acid sequence Opioid receptor target(s) References
Enkephalins
Leu-enkephalinYGGFLδ-opioid receptor, μ-opioid receptor[8][9][10]
Met-enkephalinYGGFMδ-opioid receptor, μ-opioid receptor[8][9][10]
MetorphamideYGGFMRRV-NH2δ-opioid receptor, μ-opioid receptor[8]
Peptide EYGGFMRRVGRPEWWMDYQKRYGGFLμ-opioid receptor, κ-opioid receptor[8]
Endorphins
α-EndorphinYGGFMTSEKSQTPLVTμ-opioid receptor, unknown affinity for other opioid receptors[8]
β-EndorphinYGGFMTSEKSQTPLVTLFKNAIIKNAYKKGEμ-opioid receptor†‡, δ-opioid receptor[8][9][10][7]
γ-EndorphinYGGFMTSEKSQTPLVTLμ-opioid receptor, unknown affinity for other opioid receptors[8]
Dynorphins
Dynorphin AYGGFLRRIRPKLKWDNQκ-opioid receptor†‡[8][9][11]
Dynorphin A1–8YGGFLRRIκ-opioid receptor, μ-opioid receptor (partial agonist at δ-opioid receptor)[12][13]
Dynorphin BYGGFLRRQFKVVTκ-opioid receptor[8][9]
Big dynorphinYGGFLRRIRPKLKWDNQKRYGGFLRRQFKVVTκ-opioid receptor†‡[11][14][15]
LeumorphinYGGFLRRQFKVVTRSQEDPNAYYEELFDVκ-opioid receptor[16][17][18][19]
α-NeoendorphinYGGFLRKYPKκ-opioid receptor[8][9]
β-NeoendorphinYGGFLRKYPκ-opioid receptor[8]
Nociceptin
NociceptinFGGFTGARKSARKLANQnociceptin receptor†‡[8][9][20]
Endomorphins
Endomorphin-1YPWF-NH2μ-opioid receptor[8][9]
Endomorphin-2YPFF-NH2μ-opioid receptor[8][9]
This symbol next to a receptor indicates that the corresponding peptide is a principal endogenous agonist of the receptor in humans.
This symbol next to a receptor indicates that the corresponding peptide is the endogenous ligand with the highest known potency for the receptor in humans.
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Exogenous

Exogenous opioid substances are called exorphins, as opposed to endorphins. Exorphins include opioid food peptides, such as gluten exorphin and opioid food peptides, and are often contained in cereals and animal milk. Exorphins mimic the actions of endorphins by binding to and activating opioid receptors in the brain.

Common exorphins include:

Amphibian

Synthetic

References

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