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Atomfair 2-Buten-1-ol, 2-methyl-4-(1H-purin-6-ylamino)- C10H13N5O
Description 2-Methyl-4-(7H-purin-6-ylamino)but-2-en-1-ol (CAS: 1637-39-4) is a purine derivative with the molecular formula C10H13N5O. This compound features a butenol backbone substituted with a methyl group and a purine-6-ylamino moiety, making it a valuable intermediate in organic synthesis and biochemical research. With a purity suitable for laboratory use, this product is ideal for researchers investigating nucleoside analogs, enzyme inhibitors, or plant growth regulators. It is supplied as a solid and should be stored under inert conditions to maintain stability. Synonyms include 6-(4-Hydroxy-3-methylbut-2-enylamino)purine and 2-methyl-4-(9H-purin-6-ylamino)but-2-en-1-ol.
Description
Description
2-Methyl-4-(7H-purin-6-ylamino)but-2-en-1-ol (CAS: 1637-39-4) is a purine derivative with the molecular formula C10H13N5O. This compound features a butenol backbone substituted with a methyl group and a purine-6-ylamino moiety, making it a valuable intermediate in organic synthesis and biochemical research. With a purity suitable for laboratory use, this product is ideal for researchers investigating nucleoside analogs, enzyme inhibitors, or plant growth regulators. It is supplied as a solid and should be stored under inert conditions to maintain stability. Synonyms include 6-(4-Hydroxy-3-methylbut-2-enylamino)purine and 2-methyl-4-(9H-purin-6-ylamino)but-2-en-1-ol.
- CAS No: 1637-39-4
- Molecular Formula: C10H13N5O
- Molecular Weight: 219.24
- Exact Mass: 219.11201006
- Monoisotopic Mass: 219.11201006
- IUPAC Name: 2-methyl-4-(7H-purin-6-ylamino)but-2-en-1-ol
- SMILES: CC(=CCNC1=NC=NC2=C1NC=N2)CO
- Synonyms: 2-Buten-1-ol, 2-methyl-4-(1H-purin-6-ylamino)-, 13114-27-7, 2-methyl-4-(7H-purin-6-ylamino)but-2-en-1-ol, 6-(4-Hydroxy-3-methylbut-2-enylamino)purine, 2-Buten-1-ol, 2-methyl-4-(9H-purin-6-ylamino)-
Application
This compound is primarily used in biochemical research as a precursor for synthesizing modified nucleosides or purine-based inhibitors. It may also serve as a cytokinin analog in plant tissue culture studies to investigate growth regulation. Additionally, its structural features make it a candidate for medicinal chemistry applications, particularly in targeting purine-binding enzymes.
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