Quick Comparison
| 5-Amino-1MQ | AT7687 | |
|---|---|---|
| Half-Life | 12-16 hours (limited pharmacokinetic data) | Approximately 7-10 days, supporting once-weekly dosing |
| Typical Dosage | Research: 50-100 mg oral once or twice daily. No FDA-approved dosing guidelines. No established cycling protocol. | Phase 1 first-in-human trial: ascending single and multiple subcutaneous doses. Dose ranges and Phase 2 protocols still being established. The mechanism does not require dose escalation for tolerability the way GLP-1 drugs do — appetite is not the primary target. |
| Administration | Oral (capsule) | Subcutaneous injection (likely once weekly based on pharmacokinetics) |
| Research Papers | 60 papers | 1 papers |
| Categories |
Mechanism of Action
5-Amino-1MQ
5-Amino-1MQ is a selective inhibitor of nicotinamide N-methyltransferase (NNMT), a cytoplasmic enzyme that is significantly overexpressed in white adipose tissue of obese individuals. NNMT catalyzes the methylation of nicotinamide (a form of vitamin B3) using S-adenosyl methionine (SAM) as the methyl donor, producing 1-methylnicotinamide and S-adenosyl homocysteine. This reaction effectively depletes two critical metabolic cofactors — NAD+ precursors and SAM — from fat cells.
By inhibiting NNMT, 5-Amino-1MQ preserves the cellular pools of both nicotinamide (which feeds NAD+ biosynthesis via the salvage pathway) and SAM (the universal methyl donor required for hundreds of methylation reactions). Increased NAD+ availability activates sirtuin enzymes (particularly SIRT1 and SIRT3), which are master regulators of cellular metabolism — they deacetylate and activate PGC-1alpha (promoting mitochondrial biogenesis), enhance fatty acid oxidation, and suppress lipogenic gene expression. The net effect is that adipocytes shift from a fat-storing to a fat-burning metabolic state.
In preclinical models, NNMT inhibition reduced adipocyte size, decreased total body fat mass, and increased energy expenditure without affecting food intake — suggesting the weight loss mechanism is primarily metabolic rather than appetite-driven. Additionally, NNMT inhibition has shown improvements in insulin sensitivity and reductions in plasma cholesterol. However, all published efficacy data comes from cell culture and rodent studies; no human clinical trials have been completed, so the translational relevance remains uncertain.
AT7687
AT7687 is a long-acting GIP receptor antagonist designed to reduce fat storage rather than suppress appetite — a fundamentally different mechanism from every other obesity drug currently on the market or in late-stage development. The rationale is grounded in human genetics: loss-of-function variants in the GIP receptor are associated with lower body mass index and reduced cardiometabolic risk, suggesting that pharmacologically blocking GIP signalling should reproduce these protective effects.
GIP (glucose-dependent insulinotropic polypeptide) normally functions as a fat-storage signal — released from intestinal K-cells in response to food intake, it instructs adipose tissue to take up and store circulating fatty acids. By blocking the GIP receptor specifically on adipocytes, AT7687 prevents this fat-storage signal from being transmitted, leading to reduced lipid uptake into fat cells and a metabolic shift favouring fat oxidation in muscle and liver. Because the mechanism does not depend on suppressing hunger or slowing gastric emptying, the gastrointestinal side effects that limit GLP-1 drug tolerability are largely absent.
This mechanism is the conceptual mirror of MariTide (which combines GLP-1 agonism with GIP antagonism in a single molecule) — AT7687 isolates the GIP-antagonist component to test whether it can produce meaningful weight loss alone or in future combination with GLP-1 agonists. Antag Therapeutics' first-in-human Phase 1 results in 2026 showed acceptable tolerability with mild GI symptoms, plus reductions in LDL cholesterol and resting heart rate — early signals consistent with the predicted cardiometabolic benefit profile. Phase 2 trials are expected to define the magnitude of weight loss achievable in obese patients.
Risks & Safety
5-Amino-1MQ
Common
stomach discomfort, nausea.
Serious
no completed human clinical trials, blocking NNMT could affect important cellular processes that are not yet fully understood.
AT7687
Common
mild gastrointestinal symptoms (notably milder than GLP-1 agonists in early data), injection site reactions.
Serious
long-term effects on bone health unknown — GIP signalling has roles in bone metabolism.
Rare
limited human safety data so far. Cardiovascular profile in Phase 1 included reductions in LDL cholesterol and resting heart rate, suggesting a metabolically favourable safety signal.
Full Profiles
5-Amino-1MQ →
A pill that aims to switch fat cells from 'storage mode' to 'burning mode' by blocking an enzyme (NNMT) that is overactive in the fat tissue of overweight people. Not technically a peptide, but commonly sold alongside them. Unlike appetite suppressants, this targets the fat cells directly rather than making you eat less. The science is promising in lab studies, but there are no completed human trials yet.
AT7687 →
A novel obesity drug from Danish biotech Antag Therapeutics that takes a completely different approach — instead of suppressing appetite like all the GLP-1 drugs, it stops fat from being stored in the first place by blocking the GIP receptor in fat cells. First-in-human Phase 1 trial completed in 2026 showed it is well tolerated, with mild GI side effects, and produced reductions in LDL cholesterol and resting heart rate alongside weight loss signals.