Fmoc-Ser(HPO3Bzl)-OH: Your Advanced Peptide Synthesis Component

Discover the essential role of Fmoc-Ser(HPO3Bzl)-OH in complex peptide synthesis for cutting-edge research and development.

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Advantages in Application

Enhanced Peptide Design

Utilizing Fmoc-Ser(HPO3Bzl)-OH allows for the precise incorporation of phosphoserine residues, enabling the synthesis of phosphopeptides that mimic natural biological processes and are key for understanding protein function and signaling pathways.

Reliable Synthesis Reagent

As a high-quality peptide synthesis reagent, this compound offers excellent solubility and reactivity, ensuring efficient coupling and minimal side reactions, thereby improving the overall yield and purity of synthesized peptides.

Facilitates Drug Discovery

Researchers can leverage Fmoc-Ser(HPO3Bzl)-OH for drug discovery programs, developing peptide-based drugs or probes that target specific biological pathways, a critical aspect of pharmaceutical intermediate sourcing.

Key Applications

Pharmaceutical Research

Essential for synthesizing peptide drugs and understanding protein-protein interactions in drug discovery, utilizing the CAS 158171-14-3 for accurate identification.

Biotechnology

Used in the development of peptide-based diagnostics and therapeutics, requiring reliable Fmoc-Ser(HPO3Bzl)-OH suppliers for consistent quality.

Chemical Synthesis

A valuable building block for organic chemists creating complex biomolecules and peptidomimetics.

Academic Research

Fundamental for academic institutions studying peptide chemistry, biochemistry, and structural biology, where reliable Fmoc-Ser(HPO3Bzl)-OH price is a factor.