A tetrapeptide class of biased analgesics from an Australian fungus targets the µ-opioid receptor.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 31611414.
- Also identified by DOI 10.1073/pnas.1908662116 and PMC identifier 6825270.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
An Australian estuarine isolate of <i>Penicillium</i> sp. MST-MF667 yielded 3 tetrapeptides named the bilaids with an unusual alternating LDLD chirality. Given their resemblance to known short peptide opioid agonists, we elucidated that they were weak (<i>K</i><sub>i</sub> low micromolar) μ-opioid agonists, which led to the design of bilorphin, a potent and selective μ-opioid receptor (MOPr) agonist (<i>K</i><sub>i</sub> 1.1 nM). In sharp contrast to all-natural product opioid peptides that efficaciously recruit β-arrestin, bilorphin is G protein biased, weakly phosphorylating the MOPr and marginally recruiting β-arrestin, with no receptor internalization. Importantly, bilorphin exhibits a similar G protein bias to oliceridine, a small nonpeptide with improved overdose safety. Molecular dynamics simulations of bilorphin and the strongly arrestin-biased endomorphin-2 with the MOPr indicate distinct receptor interactions and receptor conformations that could underlie their large differences in bias. Whereas bilorphin is systemically inactive, a glycosylated analog, bilactorphin, is orally active with similar in vivo potency to morphine. Bilorphin is both a unique molecular tool that enhances understanding of MOPr biased signaling and a promising lead in the development of next generation analgesics.
Medical subject headings
- Analgesics, Opioid
- Fungal Proteins
- Oligopeptides
- Penicillium
- Receptors, Opioid, mu