Evaluation of Pharmacological Rescue of Melanocortin-4 Receptor Nonsense Mutations by Aminoglycoside.
Friederike HöpfnerSarah PaisdziorNanina ReininghausIqra SohailPatrick ScheererPaolo AnnibaleHeike BiebermannPeter KühnenPublished in: Life (Basel, Switzerland) (2022)
The melanocortin-4 receptor ( MC4R ) is critical for central satiety regulation, therefore presenting a potent target for pharmacological obesity treatment. Melanocortin-4 receptor mutations prevalently cause monogenetic obesity. A possibility of overcoming stop mutations is aminoglycoside-mediated translational readthrough. Promising results were achieved in COS-7 cells, but data for human cell systems are still missing, so uncertainty surrounds this potential treatment. In transfected HEK-293 cells, we tested whether translational readthrough by aminoglycoside Geneticin combined with high-affinity ligand setmelanotide, which is effective in proopiomelanocortin or leptin receptor deficiency patients, is a treatment option for affected patients. Five MC4R nonsense mutants (W16X, Y35X_D37V, E61X, W258X, Q307X) were investigated. Confocal microscopy and cell surface expression assays revealed the importance of the mutations' position within the MC4R . N-terminal mutants were marginally expressed independent of Geneticin treatment, whereas mutants with nonsense mutations in transmembrane helix 6 or helix 8 showed wild-type-like expression. For functional analysis, G s and G q/11 signaling were measured. N-terminal mutants (W16X, Y35X_D37V) showed no cAMP formation after challenge with alpha-MSH or setmelanotide, irrespective of Geneticin treatment. Similarly, G s activation was almost impossible in W258X and Q307X with wild-type-like cell surface expression. Results for G q/11 signaling were comparable. Based on our data, this approach improbably represents a therapeutic option.
Keyphrases
- wild type
- poor prognosis
- type diabetes
- induced apoptosis
- stem cells
- binding protein
- pseudomonas aeruginosa
- metabolic syndrome
- machine learning
- cell surface
- insulin resistance
- newly diagnosed
- endothelial cells
- body mass index
- weight loss
- adipose tissue
- cystic fibrosis
- risk assessment
- cell proliferation
- mesenchymal stem cells
- replacement therapy
- bone marrow
- high throughput
- endoplasmic reticulum stress
- high resolution
- multidrug resistant
- high speed
- dna binding