Boc-Ala(cPen)-OH H2O
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Boc-Ala(cPen)-OH H2O

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Category
BOC-Amino Acids
Catalog number
BAT-000984
Molecular Formula
C13H25NO5
Molecular Weight
275.34
Synonyms
Boc-Ala(Cyclopentyl)-OH H2O; N-α-(t-Butoxycarbonyl)-β-cyclopentyl-L-alanine hydrate; (2S)-3-Cyclopentyl-2-[(2-methylpropan-2-yl)oxycarbonylamino]propanoic acid hydrate
Storage
Store at 2-8 °C

Boc-Ala(cPen)-OH·H₂O, a specialized chemical compound utilized in scientific research and pharmaceutical development, offers a multitude of applications. Here are the key applications, presented with high perplexity and burstiness:

Peptide Synthesis: Serving as a foundational element in peptide construction, Boc-Ala(cPen)-OH·H₂O plays a pivotal role in enhancing the stability and bioactivity of synthesized peptides. This enhanced stability facilitates the generation of innovative peptides, crucial for advancing drug development and biochemical investigations into uncharted territories.

Drug Design: Within the realm of medicinal chemistry, the versatile Boc-Ala(cPen)-OH·H₂O serves as a catalyst for designing and refining novel drug candidates. By leveraging its structural diversity, researchers can optimize the pharmacological properties of potential medications. Through strategic modifications to the peptide backbone, drug efficacy, selectivity, and metabolic stability can be finely tuned, propelling drug design into realms of elevated precision and effectiveness.

Structural Biology: A critical player in the exploration of protein structure and function, Boc-Ala(cPen)-OH·H₂O acts as a conformationally constrained amino acid, aiding in the maintenance of specific protein folding and stability. Its rigid structure proves invaluable in studies utilizing NMR and X-ray crystallography, where decoding protein conformation nuances is paramount for unlocking the secrets of protein behavior and functionality.

Protease Inhibition Studies: At the forefront of protease inhibitor research, Boc-Ala(cPen)-OH·H₂O emerges as a key component in the creation of synthetic peptides for investigating protease activity and inhibition. By integrating this compound into substrates, scientists gain valuable insights into developing targeted protease inhibitors as therapeutic interventions against a spectrum of diseases, illuminating new pathways for combating various health challenges.

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