Fmoc-Lys(Ac)-OH: Your Key to Advanced Peptide Synthesis

Discover the essential properties and applications of this vital Fmoc-protected amino acid derivative.

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Advantages It Brings

Enhanced Peptide Modification

The use of this acetylated lysine derivative allows for the precise introduction of acetylation, a common modification that impacts protein function and stability, aiding in complex peptide chemistry research.

Reliable Fmoc SPPS Reagents

As a high-purity Fmoc-amino acids, it ensures consistent and high yields in Fmoc solid-phase peptide synthesis, reducing experimental variability.

Facilitates Proteomics Research

By enabling the synthesis of modified peptides, it is instrumental in advancing proteomics research and understanding cellular signaling pathways.

Key Applications

Peptide Synthesis

Essential for the construction of custom peptides, this amino acid derivative is a cornerstone for pharmaceutical and biotechnological research, contributing to novel therapeutic development.

Fmoc SPPS

The compound is an integral part of the Fmoc solid-phase peptide synthesis workflow, providing a protected lysine moiety that can be selectively deprotected and coupled.

Introducing N-epsilon-acetyl-lysine

Researchers utilize it to create peptides with specific acetylation patterns on the lysine side chain, mimicking natural post-translational modifications.

Amino Acid Building Blocks

As a versatile building block, it finds application in academic and industrial laboratories for a wide array of biochemical synthesis projects.