N-β-(t-Butoxycarbonyl)-γ-(3-benzothienyl)-L-β-homoalanine
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N-β-(t-Butoxycarbonyl)-γ-(3-benzothienyl)-L-β-homoalanine

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Category
BOC-Amino Acids
Catalog number
BAT-005203
CAS number
270063-45-1
Molecular Formula
C17H21NO4S
Molecular Weight
335.42
N-β-(t-Butoxycarbonyl)-γ-(3-benzothienyl)-L-β-homoalanine
IUPAC Name
(3S)-4-(1-benzothiophen-3-yl)-3-[(2-methylpropan-2-yl)oxycarbonylamino]butanoic acid
Synonyms
Boc-Ala(3-Bzt)-(C#CH2)OH; (S)-3-[(t-Butoxycarbonyl)amino]-4-(3-benzothienyl)butanoic acid; Boc-(S)-3-amino-4-(3-benzothienyl)-butyric acid; Boc-b-HoAla(3-benzothienyl)-OH
Purity
≥ 95%
Density
1.248 g/cm3
Boiling Point
529.6 °C at 760 mmHg
InChI
InChI=1S/C17H21NO4S/c1-17(2,3)22-16(21)18-12(9-15(19)20)8-11-10-23-14-7-5-4-6-13(11)14/h4-7,10,12H,8-9H2,1-3H3,(H,18,21)(H,19,20)/t12-/m0/s1
InChI Key
VRUFHPBCNHYEPJ-LBPRGKRZSA-N
Canonical SMILES
CC(C)(C)OC(=O)NC(CC1=CSC2=CC=CC=C21)CC(=O)O

N-β-(t-Butoxycarbonyl)-γ-(3-benzothienyl)-L-β-homoalanine, a specialized amino acid derivative, finds applications in peptide synthesis, drug development, and biotechnological research. Explore its diverse applications with high perplexity and burstiness:

Peptide Synthesis: A cornerstone in complex peptide synthesis, this derivative plays a pivotal role in crafting peptides with distinctive properties and functions. By integrating amino acid derivatives like N-β-(t-Butoxycarbonyl)-γ-(3-benzothienyl)-L-β-homoalanine, chemists unlock the potential to generate peptides essential for therapeutic, diagnostic, and research endeavors. Dive into the intricate realm of peptide synthesis for a deeper understanding of its applications.

Drug Development: Embark on a journey of pharmaceutical innovation with N-β-(t-Butoxycarbonyl)-γ-(3-benzothienyl)-L-β-homoalanine, a catalyst for novel drug development. Its unique structural characteristics empower researchers to design peptide-based drugs, boasting enhanced stability, specificity, and pharmacological efficacy. Witness the evolution of drug candidates as researchers harness this derivative to optimize efficacy and minimize adverse effects through meticulous design.

Biotechnological Research: Uncover the mysteries of protein interactions and enzyme functions in biotechnological research using this compound. By incorporating N-β-(t-Butoxycarbonyl)-γ-(3-benzothienyl)-L-β-homoalanine, researchers delve into the intricate roles of specific amino acids within protein structures. Gain insights into enzyme catalysis, signal transduction, and protein engineering as researchers push boundaries and revolutionize biotechnological understanding through innovative experimental designs.

Proteomics: Delve into the world of proteomics with N-β-(t-Butoxycarbonyl)-γ-(3-benzothienyl)-L-β-homoalanine as your guide. Through the creation of modified proteins or peptides for mass spectrometry analysis, researchers achieve unparalleled resolution and identification of proteins within complex mixtures. Witness the power of labeling and modifying peptides with this derivative in unlocking biomarkers and unraveling protein dynamics within biological systems. Experience the intricate dance of proteins in proteomic studies with this indispensable compound as your key.

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