5-Amino-1MQ
Product information
$129.99
Product description
5-Amino-1MQ, also referred to as 5 amino 1 methylquinolinium, is a small molecule compound used exclusively in controlled laboratory research. It is commonly studied in relation to nicotinamide N-methyltransferase (NNMT) activity, with research focusing on cellular metabolism, NAD+ pathway regulation, and adipocyte biology.
The compound is supplied at research-grade purity to support experimental reproducibility.
For laboratory research use only. Not intended for human or animal consumption
For research use only. Not for human consumption.
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5 - Amino - 1MQ
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Product Usage
This product is intended solely for use as a research chemical in vitro and laboratory experimentation by licensed, qualified professionals. It is not approved for human or animal consumption, and bodily introduction is forbidden by law. Misuse, misbranding, or mislabelling as a drug, food, or cosmetic is strictly prohibited by law. All information provided is for educational purposes only.
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- Characteristics
- What Is 5 Amino 1MQ?
- Current Research on 5-Amino-1MQ
- Experimental Utility of 5-Amino-1MQ
- Summary
- References
- Certificate of Analysis (COA)
- Resource
Table of Contents
- Characteristics
- What Is 5 Amino 1MQ?
- Current Research on 5-Amino-1MQ
- Experimental Utility of 5-Amino-1MQ
- Summary
- References
- Certificate of Analysis (COA)
- Resource
Characteristics
Molecular Formula | C10H11N2+ |
CAS | 42464-96-0 |
Molar Mass | 152.21 g/mol |
Amino Acid Sequence | Not a peptide sequence but a small molecule NNMT inhibitor |
Synonyms | 5-Amino-1-MQ iodide, 5-Amino-1-methylquinolinium, iodide (1:1), 5-Amino-1MQ iodide |
Solubility | Soluble in Water |
Organoleptic Profile | Powder |
Composition | Lyophilized powder - requires reconstitution |
What Is 5 Amino 1MQ?
Although frequently searched as a 5 amino 1mq peptide, 5-Amino-1MQ is technically a small molecule NNMT inhibitor rather than a peptide. It is structurally designed to interact with metabolic enzyme pathways and has become a subject of interest in metabolic and mitochondrial research fields.
Current Research on 5-Amino-1MQ
5-Amino-1MQ has been examined in laboratory research studies as an inhibitor of NNMT, an enzyme associated with cellular metabolic pathways. These areas of investigation are of particular relevance:
NNMT Interaction. 5-Amino-1MQ may inhibit NNMT activity with possible effects on NAD+ and S-adenosylmethionine (SAM) dynamics in experimental models.
Adipocyte Biology. Research has explored the compound’s role in adipocyte systems, including investigations into lipid accumulation patterns and related metabolic processes.
Mitochondrial Pathways. Preliminary studies suggest potential associations between 5-Amino-1MQ and mitochondrial outcomes, including investigations of biogenesis and cellular energy-related mechanisms.
Experimental Utility of 5-Amino-1MQ
- Metabolic Pathways. Studied for its potential to interact with NNMT and influence cellular metabolism in laboratory settings.
- Adipose Tissue Function. 5-Amino-1MQ has been investigated in relation to adipocyte metabolism, particularly its potential effects on lipid accumulation patterns.
- NAD+ Dynamics. In research systems, scientists have evaluated 5-Amino-1MQ for associations with NAD+ availability and cellular energetics due to its interaction with NNMT.
- Mitochondrial Function. Early studies have evaluated links between 5-Amino-1MQ and mitochondrial biogenesis and function.
- Methylation Support. The compound has been considered in studies of SAM availability and methylation-dependent cellular mechanisms.
Summary
5-Amino-1MQ (5 amino 1mq) has been examined in laboratory studies as a small molecule inhibitor of nicotinamide N-methyltransferase (NNMT). Also known as 5 amino 1 methylquinolinium, its structure has made it a subject of interest for investigating NNMT activity and related cellular metabolic pathways.
Current research on 5-Amino-1MQ remains focused on preclinical and laboratory models, where ongoing studies continue to explore its mechanisms and potential experimental applications.
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