N-Benzyloxycarbonyl-L-Threonine: A Key Building Block for Peptide Synthesis and Nutritional Research
Discover the chemical properties and applications of this protected amino acid, vital for scientific advancement.
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N-Benzyloxycarbonyl-L-Threonine
N-Benzyloxycarbonyl-L-Threonine is a crucial N-Cbz-protected amino acid derivative, serving as a fundamental component in various scientific applications, particularly in peptide synthesis and biochemical research. Its protected nature ensures controlled reactions, making it an indispensable tool for chemists and researchers aiming for precision and high yields in complex organic synthesis.
- Unlock precise peptide synthesis: As a key reagent in peptide synthesis, N-Cbz-L-Threonine facilitates the controlled addition of threonine residues, essential for creating therapeutic peptides and proteins.
- Explore L-Threonine nutritional applications: Its role as a derivative of L-Threonine makes it valuable for research into L-Threonine nutritional applications, aiding in the understanding of its impact on gut health and immune response.
- Understand protected amino acid chemical properties: The detailed protected amino acid chemical properties, including its purity and physical state, ensure reliable outcomes in downstream applications.
- Reliable sourcing of N-Benzyloxycarbonyl-L-Threonine CAS 19728-63-3: With its established CAS number, sourcing this compound for your specific chemical synthesis of L-Threonine needs is streamlined and efficient.
Advantages You Gain
Enhanced Peptide Construction
Utilize N-Cbz-L-Threonine for superior control in peptide synthesis, leading to more accurate and stable peptide chains vital for drug discovery.
Foundation for Nutritional Insights
Dive deep into L-Threonine nutritional applications with a reliable derivative, supporting research on essential amino acids and their physiological roles.
Guaranteed Chemical Purity
Benefit from high purity standards, ensuring that the protected amino acid chemical properties are consistent for reproducible experimental results.
Key Applications
Peptide Synthesis
This protected amino acid is a cornerstone for synthesizing complex peptides, critical for pharmaceutical development and biochemical research, aiding in solution phase peptide synthesis.
Biochemical Research
Researchers utilize N-Cbz-L-Threonine to study amino acid metabolism and protein structures, contributing to advancements in fields like molecular biology and nutrition.
Organic Chemistry
As a versatile building block, it is employed in various organic synthesis pathways, enabling the creation of novel chemical compounds.
Nutritional Studies
Investigating the roles of essential amino acids like L-Threonine in health and disease relies on access to derivatives such as N-Cbz-L-Threonine for detailed analysis.