Fmoc-L-cysteine hydrate
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Fmoc-L-cysteine hydrate

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Category
Fmoc-Amino Acids
Catalog number
BAT-000416
Molecular Formula
C18H17NO4S·H2O
Molecular Weight
361.40
Synonyms
Fmoc-L-Cys-OH H2O
Related CAS
135248-89-4 (anhydrous base)
Appearance
White to light yellow crystalline powder
Purity
≥ 97% (Assay by titration)
Melting Point
108-120 °C
Storage
Store at 2-8 °C

Fmoc-L-cysteine hydrate, a derivative of the amino acid cysteine, is a key player in peptide synthesis and diverse bioscience applications. Here are four applications of Fmoc-L-cysteine hydrate:

Peptide Synthesis: Actively involved in solid-phase peptide synthesis, Fmoc-L-cysteine hydrate serves as a fundamental component for meticulously crafting peptides in a stepwise fashion, ensuring precise control over sequence and length. Its Fmoc protecting group aids in peptide assembly, particularly facilitating the introduction of cysteine residues crucial for the formation of disulfide bridges that bestow stability upon peptide structures.

Protein Engineering: Within the intricate domain of protein engineering, Fmoc-L-cysteine hydrate is strategically utilized to insert cysteine residues with precision into proteins. This strategic maneuver enables targeted modifications, like creating covalent bonds or affixing labels and probes. The resulting engineered proteins serve as invaluable tools for unraveling the intricate interplay between protein structure and function and for developing therapeutic proteins endowed with enhanced properties.

Drug Development: In the dynamic sphere of pharmaceutical innovation, Fmoc-L-cysteine hydrate plays a significant role in synthesizing peptide-based drugs that rely on cysteine for their activity or stability. By incorporating cysteine residues, these drugs can acquire favorable pharmacological traits, such as improved bioavailability and targeted delivery. Thus, Fmoc-L-cysteine hydrate emerges as a crucial instrument in advancing the development of novel therapeutics and refining existing pharmacological agents.

Bioconjugation: Fmoc-L-cysteine hydrate is a prominent player in bioconjugation processes that facilitate the merging of biomolecules with diverse chemical entities. The reactive thiol group of cysteine forms enduring linkages with various functional groups, enabling the attachment of drugs, fluorescent dyes, or other molecules to peptides and proteins. This application holds significant importance in crafting diagnostic assays, imaging agents, and precisely targeted therapies, embodying the fusion of bioscience and chemical innovation.

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