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Specifications
| Appearance | White to off-white powder |
| IR | Spectrum in accordance with structure |
| Specific Rotation [α]D20 | +36±2° (C=1, Dioxane) |
| Water (K.F) | 1.0% max |
| Purity (HPLC) | 98.0% min |
Applications
Boc-L-Tyrosine (CAS 3978-80-1) is a protected amino acid derivative commonly used in peptide synthesis and pharmaceutical research. Its main application is as a building block in solid-phase and solution-phase peptide synthesis, where the Boc (tert-butoxycarbonyl) group temporarily protects the amino group of L-tyrosine during chain elongation. This protection prevents unwanted side reactions, ensuring the correct sequence and structure of peptides. Boc-L-Tyrosine is also used in the development of peptide-based drugs, enzyme inhibitors, and other bioactive molecules. Additionally, it serves as an intermediate in medicinal chemistry for the synthesis of tyrosine-containing derivatives and complex molecules with potential therapeutic applications.
Benefits
The benefits of Boc-L-Tyrosine are primarily related to its role in facilitating efficient and controlled peptide synthesis. The Boc protecting group is stable under mildly acidic and neutral conditions but can be selectively removed under acidic conditions, providing precise control over the synthesis process. This ensures high purity, reduced side reactions, and improved yield of target peptides. Its compatibility with other protecting groups and reagents allows for the synthesis of complex peptides, including those with post-translational modifications or functional side chains. By providing a reliable and versatile protected amino acid, Boc-L-Tyrosine enables researchers to efficiently produce bioactive peptides for pharmaceutical, biochemical, and research applications.
Conclusion
In conclusion, Boc-L-Tyrosine is an essential intermediate and protected amino acid derivative for peptide synthesis and drug development. Its Boc protection ensures controlled, high-purity synthesis of tyrosine-containing peptides and derivatives, supporting the production of bioactive molecules for research and therapeutic applications. Its versatility and reliability make it a key component in modern peptide chemistry and pharmaceutical research.

