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Published on: May 31, 2022
Phylogenetic diversity and functional efficacy of the C-terminally expressed heptapeptide unit in the opioid
E Bojnik1, E Boynik, M Corbani
1Institute of Biochemistry, Biological Research Centre, Hungarian Academy of Sciences, 6726 Szeged, Temesvari krt 62, Hungary.
Abstract:
The heptapeptide Met-enkephalin-Arg6-Phe7 (MERF) with the sequence of YGGFMRF is a potent endogenous opioid located at the C-terminus of proenkephalin-A (PENK), the common polypeptide precursor of Met- and Leu-enkephalin. Our systematic bioinformatic survey revealed considerable sequence polymorphism at the heptapeptide region of different PENK prepropeptides among 56 vertebrate animals. Four orthologous heptapeptides with single or double amino acid replacements were identified among 15 animals, such as YGGFMGY (zebrafish), YGGFMRY (newt), YGGFMKF (hedgehog tenrek) and YGGFMRI (mudpuppy). Each novel heptapeptide, together with the mammalian consensus MERF and Met-enkephalin, were chemically synthesized and subjected to functionality studies, using radioligand binding competition and G-protein activation assays in rat brain membranes. Equilibrium binding affinities changed from good to modest as measured by receptor type selective [3H]opioid radioligands. The relative affinities of the heptapeptides reveal slight mu-receptor (MOP) preference over the delta-receptors (DOP). [35S]GTPγS assay, which measures the agonist-mediated G-protein activation, has demonstrated that all the novel heptapeptides were also potent in stimulating the regulatory G-proteins. All peptides were effective in promoting the agonist induced internalization of the green fluorescence protein-tagged human mu-opioid receptor (hMOP-EGFP) stably expressed in HEK293 cells. Thus, the C-terminally processed PENK heptapeptide orthologs exhibited satisfactory bioactivities, moreover they represent further members of the so-called "natural combinatorial neuropeptide library" emerged by evolution.
Insights
Evolution has generated diverse Met-enkephalin-Arg6-Phe7 (MERF) heptapeptide variants across vertebrates. These novel opioid peptides exhibit significant mu-opioid receptor (MOP) binding and G-protein activation, expanding the natural neuropeptide library.
Area of Science:
- Neuroscience
- Biochemistry
- Evolutionary Biology
Background:
- Met-enkephalin-Arg6-Phe7 (MERF) is a potent endogenous opioid derived from proenkephalin-A (PENK).
- PENK is the precursor for Met- and Leu-enkephalin, playing a crucial role in the endogenous opioid system.
Purpose of the Study:
- To conduct a bioinformatic survey of PENK prepropeptides in vertebrates.
- To identify and characterize novel heptapeptide orthologs of MERF.
- To investigate the functional bioactivities of these novel heptapeptides.
Main Methods:
- Bioinformatic analysis of PENK sequences from 56 vertebrate species.
- Chemical synthesis of identified heptapeptides, MERF, and Met-enkephalin.
- Radioligand binding competition assays using selective opioid radioligands.
- G-protein activation assays ([35S]GTPγS) in rat brain membranes.
- Agonist-induced internalization assays of human mu-opioid receptor (hMOP-EGFP).
Main Results:
- Discovered sequence polymorphism in the heptapeptide region of PENK prepropeptides across vertebrates.
- Identified four novel heptapeptide orthologs (e.g., YGGFMGY, YGGFMRY, YGGFMKF, YGGFMRI) from 15 animal species.
- Synthesized peptides demonstrated good to modest equilibrium binding affinities, with a slight preference for mu-opioid receptors (MOP) over delta-opioid receptors (DOP).
- All novel heptapeptides potently activated G-proteins and promoted MOP internalization.
Conclusions:
- C-terminally processed PENK heptapeptide orthologs possess significant bioactivities.
- These findings expand the known repertoire of endogenous opioid peptides.
- The identified variants represent novel additions to the evolutionarily generated
- natural combinatorial neuropeptide library.
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