Boc-Asp(OAll)-OH DCHA
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Boc-Asp(OAll)-OH DCHA

* Please kindly note that our products are not to be used for therapeutic purposes and cannot be sold to patients.

Category
BOC-Amino Acids
Catalog number
BAT-000784
Molecular Formula
C12H19NO6·C12H23N
Molecular Weight
454.6
Synonyms
Boc-L-aspartic acid 4-allyl ester dicyclohexylamine salt
Storage
Store at 2-8 °C

Boc-Asp(OAll)-OH DCHA, a versatile protected amino acid derivative, finds applications in peptide synthesis and biochemistry. Explore the myriad uses of this compound with high perplexity and burstiness.

Peptide Synthesis: Boc-Asp(OAll)-OH DCHA plays a pivotal role in peptide synthesis, especially when selective deprotection is essential. By safeguarding the aspartic acid side chain and the N-terminus while facilitating other modifications, this compound enables the creation of intricate peptides with exceptional purity and yield.

Drug Development: In the realm of pharmaceutical innovation, Boc-Asp(OAll)-OH DCHA shines as a cornerstone for the development of peptidomimetics that echo the structure of peptides in drug design. These synthetic compounds pave the way for novel therapeutics with enhanced stability and bioavailability, especially in the realm of targeting protein-protein interactions. Here, the compound serves as a catalyst for groundbreaking advancements that hold promise for transformative treatments.

Structural Biology: Consider the invaluable contribution of Boc-Asp(OAll)-OH DCHA in the realm of structural biology, where its use extends to generating modified peptides for in-depth studies. These modified peptides, pivotal in crystallography and NMR, play a crucial role in unraveling the intricate three-dimensional structures of proteins and protein complexes. Unraveling these structural secrets is essential for deciphering molecular interactions and informing the design of novel drugs for targeted therapies.

Enzyme Activity Probes: Delve into the realm of enzyme activity probes synthesized with the aid of Boc-Asp(OAll)-OH DCHA. These probes serve as vital tools for probing the activity and specificity of enzymes, including proteases and kinases. Through these investigations, researchers gain essential insights into enzyme functions, paving the way for the development of enzyme inhibitors as promising therapeutic candidates. Witness the compound’s transformative impact in elucidating the intricate world of enzymatic activities and therapeutic avenues.

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