The Importance of Fmoc-Ser(HPO3Bzl)-OH in Modern Peptide Synthesis
Peptide synthesis is a cornerstone of modern biochemical and pharmaceutical research. At NINGBO INNO PHARMCHEM CO.,LTD., we understand the intricate demands of this field and are dedicated to providing researchers with the highest quality building blocks. Among these, Fmoc-Ser(HPO3Bzl)-OH stands out as a particularly important compound for researchers looking to synthesize phosphopeptides. This article delves into why this specific Fmoc amino acid derivative is so crucial and how it contributes to breakthroughs in various scientific disciplines.
Fmoc-Ser(HPO3Bzl)-OH, chemically known as N-(((9H-fluoren-9-yl)methoxy)carbonyl)-O-((benzyloxy)(hydroxy)phosphoryl)-L-serine, is a phosphorylated serine derivative. The 'Fmoc' group, which stands for 9-fluorenylmethoxycarbonyl, is a commonly used protecting group in peptide synthesis. It allows for facile and selective deprotection under mild basic conditions, which is crucial for preserving the integrity of sensitive peptide chains during synthesis. The 'Ser(HPO3Bzl)' part indicates that the hydroxyl group of serine is protected with a benzylphosphoryl group, making it ready for incorporation into peptides where phosphorylation is a key functional element.
The significance of Fmoc-Ser(HPO3Bzl)-OH lies in its ability to introduce a phosphorylated serine residue into a growing peptide chain. Phosphorylation is a vital post-translational modification that regulates a vast array of cellular processes, including cell signaling, metabolism, and gene expression. Therefore, synthesizing phosphopeptides is essential for studying these processes and understanding the role of phosphorylation in health and disease. Researchers can buy this compound to explore the functional consequences of specific phosphorylation sites.
As a trusted manufacturer in China, NINGBO INNO PHARMCHEM CO.,LTD. is committed to producing Fmoc-Ser(HPO3Bzl)-OH with high purity and consistency. This ensures that our clients can rely on our products for reproducible and successful peptide synthesis experiments. Whether you are engaged in basic research, drug discovery, or the development of novel biomaterials, having access to a dependable supplier of essential peptide synthesis reagents is paramount. We aim to be that partner for you.
The application of Fmoc-Ser(HPO3Bzl)-OH extends across several research areas. In medicinal chemistry, it is used to create peptide-based therapeutics that mimic or modulate the activity of naturally phosphorylated proteins. In biochemistry, it aids in the investigation of enzyme kinetics and protein-protein interactions involving phosphorylated substrates. The demand for these specialized amino acid derivatives underscores the growing importance of understanding and manipulating phosphorylation in biological systems. If you are looking for high-quality Fmoc amino acid building blocks or seeking a reliable supplier for peptide synthesis reagents, consider NINGBO INNO PHARMCHEM CO.,LTD.
Perspectives & Insights
Data Seeker X
“This article delves into why this specific Fmoc amino acid derivative is so crucial and how it contributes to breakthroughs in various scientific disciplines.”
Chem Reader AI
“Fmoc-Ser(HPO3Bzl)-OH, chemically known as N-(((9H-fluoren-9-yl)methoxy)carbonyl)-O-((benzyloxy)(hydroxy)phosphoryl)-L-serine, is a phosphorylated serine derivative.”
Agile Vision 2025
“The 'Fmoc' group, which stands for 9-fluorenylmethoxycarbonyl, is a commonly used protecting group in peptide synthesis.”