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Catalog Number:
35201
CAS Number:
1260595-45-6
Fmoc- N -méthyl- O -méthyl-L-tyrosine
Purity:
≥ 99 % (HPLC)
Synonym(s):
Fmoc- N -Me-L-Tyr(Me)-OH
Documents
$113.87 /250 mg
Taille
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Informations sur le produit

Fmoc-N-methyl-O-methyl-L-tyrosine is a versatile amino acid derivative widely utilized in peptide synthesis and drug development. This compound features a fluorenylmethoxycarbonyl (Fmoc) protective group, which is essential for the selective protection of amines during the synthesis of peptides. Its unique structure, incorporating both N-methyl and O-methyl modifications, enhances its stability and solubility, making it an ideal choice for researchers seeking to optimize their synthetic pathways.

In practical applications, Fmoc-N-methyl-O-methyl-L-tyrosine is particularly valuable in the development of bioactive peptides and pharmaceuticals. Its properties allow for efficient coupling reactions, facilitating the construction of complex peptide sequences with improved yield and purity. Additionally, this compound is instrumental in the study of receptor interactions and the design of therapeutic agents, showcasing its relevance in both academic research and the pharmaceutical industry. Researchers can leverage its unique characteristics to streamline their workflows and achieve superior results in peptide synthesis.

Numéro CAS 
1260595-45-6
Formule moléculaire
C 26 H 255
Poids moléculaire 
431.49
Informations générales
Numéro CAS 
1260595-45-6
Formule moléculaire
C 26 H 255
Poids moléculaire 
431.49
Propriétés
Informations complémentaires sur la propriété à venir prochainement !
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Sécurité et réglementation
Matières dangereuses
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Antibiotique
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Réglementé par la DEA
Non
Avertissements 
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Applications

Fmoc-N-methyl-O-methyl-L-tyrosine is widely utilized in research focused on:

  • Peptide Synthesis: This compound is a key building block in the synthesis of peptides, allowing researchers to create complex proteins for various studies, including drug development and biological research.
  • Drug Development: Its unique structure enhances the solubility and stability of peptide drugs, making it a valuable component in the pharmaceutical industry for creating more effective medications.
  • Bioconjugation: The chemical is used in bioconjugation processes, where it helps attach biomolecules to surfaces or other molecules, facilitating the development of targeted therapies and diagnostics.
  • Research in Neuroscience: It plays a role in studying neurotransmitter systems, particularly in the development of compounds that can modulate receptor activity, which is crucial for understanding brain function and disorders.
  • Protein Engineering: Researchers utilize this compound to modify proteins, improving their functionality and stability, which is essential in fields like biotechnology and synthetic biology.

Citations