N-Cbz-PTE: A Versatile Phosphonoglycine Derivative for Advanced Chemical Synthesis

Discover the critical role of N-Cbz-PTE in peptide research and organic synthesis.

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Key Advantages

Versatile Synthetic Intermediate

Leverage N-Cbz-PTE as a versatile building block in organic synthesis, facilitating the creation of complex molecules through established reaction pathways like the Wittig-Horner reaction.

Enhances Peptide Research

This phosphonoglycine derivative significantly contributes to amino acid and peptide research by enabling the synthesis of specific dehydroamino acid esters crucial for understanding peptide structures and functions.

Pharmaceutical Relevance

The compound's application in synthesizing calcitonin gene-related peptide antagonists highlights its importance in the pharmaceutical sector for drug development and therapeutic research.

Key Applications

Organic Synthesis

N-Cbz-PTE is a cornerstone for various organic synthesis pathways, particularly those involving the formation of carbon-phosphorus bonds and amino acid modifications.

Peptide Synthesis

Its role in creating dehydroamino acids makes it invaluable for advanced peptide synthesis, enabling the construction of novel peptide sequences for research and development.

Pharmaceutical Development

Used in the synthesis of potential drug candidates like calcitonin gene-related peptide antagonists, this chemical intermediate supports pharmaceutical discovery.

Biochemical Research

Researchers utilize N-Cbz-PTE for a broad range of biochemical investigations, particularly those focusing on amino acids, peptides, and their biological activities.