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Fmoc-N-Me-Phe-OH (CAS 77128-73-5) is an N-methylated protected amino-acid building block selected for backbone N-methylation, conformational tuning and proteolytic-stability/SAR studies. This positions it within backbone N-methylated peptide and peptidomimetic synthesis.
N-methylation increases steric demand during coupling; reagent choice and coupling time may need adjustment relative to the unmethylated residue. Before substitution into an established synthesis, compare stereochemistry, protecting-group orthogonality and downstream deprotection requirements.
Product Information
| Product Name | Fmoc-N-Me-Phe-OH |
| Catalog No. | AS4280 |
| CAS No. | 77128-73-5 |
| Molecular Formula | C25H23NO4 |
| Molecular Weight | 401.45 g/mol |
| Compound Type | N-methylated protected amino-acid building block |
| Primary Research Use | Backbone N-methylated peptide and peptidomimetic synthesis |
Backbone N-Methylation
Fmoc-N-Me-Phe-OH introduces an N-methylated amino-acid unit into peptide or peptidomimetic synthesis. Backbone N-methylation removes an amide hydrogen after incorporation and can alter local conformation, hydrogen bonding and proteolytic susceptibility.
Coupling Considerations
N-methylated residues are more sterically demanding than their unmethylated analogs. Difficult couplings may require stronger activation, longer reaction time or sequence-specific optimization rather than simple reagent excess.
Selection in SAR Programs
Use the exact residue and stereochemistry required by the design. N-methylation and side-chain changes should be treated as separate variables when interpreting conformational or activity effects.
Browse the unusual residue building blocks for related structures. Complex sequence work can also use specialty peptide building blocks.
Product Documents
MSDS - Fmoc-N-Me-Phe-OH (AS4280)
The Safety Data Sheet provides product identification, hazard information, handling and storage guidance, exposure controls, transport information, and regulatory information for laboratory use.
Frequently Asked Questions
What does N-methylation change in Fmoc-N-Me-Phe-OH?
It removes a backbone amide hydrogen after incorporation and can alter local hydrogen bonding, conformation and proteolytic susceptibility.
Can Fmoc-N-Me-Phe-OH be more difficult to couple?
Yes. Its N-methylated backbone nitrogen is more sterically demanding than the corresponding unmethylated residue, so activation and reaction time may need sequence-specific adjustment.
Can the opposite stereoisomer replace Fmoc-N-Me-Phe-OH?
No. Stereochemistry and N-methylation are independent structural variables and can produce different peptide conformations.