ArticleThe European journal of neuroscience2021
A selective role for receptor activity-modifying proteins in subchronic action of the amylin selective receptor agonist NN1213 compared with salmon calcitonin on body weight and food intake in male mice.
Article in The European journal of neuroscience, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed, 24 citations in OpenAlex.
- The locus coeruleus calcitonin receptor can Be engaged by amylin and calcitonin gene-related peptide to suppress feeding without inducing nausea.Molecular metabolism · 2026Article
- The story of amylin: from physiology to therapy.Nature metabolism · 2026Review
- Receptor activity-modifying protein 3 enhances GLP-1-mediated insulin secretion.The Journal of biological chemistry · 2025Article
- Amylin: emergent therapeutic opportunities in overweight, obesity and diabetes mellitus.Nature reviews. Endocrinology · 2025Review
- Structural and dynamic features of cagrilintide binding to calcitonin and amylin receptors.Nature communications · 2025Article
- NN1213 - A Potent, Long-Acting, and Selective Analog of Human Amylin.Journal of medicinal chemistry · 2024Article
- Structural insight into selectivity of amylin and calcitonin receptor agonists.Nature chemical biology · 2024Article
- Mediators of Amylin Action in Metabolic Control.Journal of clinical medicine · 2022Review
- Mouse Microglial Calcitonin Receptor Knockout Impairs Hypothalamic Amylin Neuronal pSTAT3 Signaling but Lacks Major Metabolic Consequences.Metabolites · 2022Article
- A selective role for receptor activity-modifying proteins in subchronic action of the amylin selective receptor agonist NN1213 compared with salmon calcitonin on body weight and food intake in male mice.The European journal of neuroscience · 2021Article
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Authors and funding
7 authors at 2 institutions in 2 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
The role of receptor activity-modifying proteins (RAMPs) in modulating the pharmacological effects of an amylin receptor selective agonist (NN1213) or the dual amylin-calcitonin receptor agonist (DACRA), salmon calcitonin (sCT), was tested in three RAMP KO mouse models, RAMP1, RAMP3 and RAMP1/3 KO. Male wild-type (WT) and knockout (KO) littermate mice were fed a 45% high-fat diet for 20 weeks prior to the 3-week treatment period. A decrease in body weight after NN1213 was observed in all WT mice, whereas sCT had no effect. The absence of RAMP1 had no significant effect on NN1213 efficacy, and sCT was still inactive. However, the absence of RAMP3 impeded NN1213 efficacy but improved sCT efficacy. Similar results were observed in RAMP1/3 KO suggesting that the amylin receptor 3 (AMY3 = CTR + RAMP3) is necessary for NN1213's maximal action on body weight and food intake and that the lack of AMY3 allowed sCT to be active. These results suggest that the chronic use of DACRA such as sCT can have unfavourable effect on body weight loss in mice (which differs from the situation in rats), whereas the use of the amylin receptor selective agonist does not. AMY3 seems to play a crucial role in modulating the action of these two compounds, but in opposite directions. The assessment of a long-term effect of amylin and DACRA in different rodent models is necessary to understand potential physiological beneficial and unfavourable effects on weight loss before its transition to clinical trials.
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