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Glycyl-glycine-[15N2]

General Information
Catalog: BLP-011538
CAS: 108451-47-4
Molecular Formula: C4H8[15N]2O3
Molecular Weight: 134.10
Chemical Structure
Glycyl-glycine-[15N2]
Description Glycyl-glycine-[15N2] is the labelled analogue of Glycyl-glycine. Glycyl-glycine is the simplest peptide that is composed of two glycine molecules. Glycylglycine acts as a gamma-glutamyl acceptor.
Synonyms Glycyl-glycine-15N2; 2-(2-aminoacetamido)acetic acid-15N2; Glycylglycine-15N2; Diglycine-15N2; H-Gly-Gly-OH-15N2
IUPAC Name 2-[(2-(15N)azanylacetyl)(15N)amino]acetic acid
Related CAS 556-50-3 (unlabelled)
Isomeric SMILES C(C(=O)[15NH]CC(=O)O)[15NH2]
Canonical SMILES C(C(=O)NCC(=O)O)N
InChI InChI=1S/C4H8N2O3/c5-1-3(7)6-2-4(8)9/h1-2,5H2,(H,6,7)(H,8,9)/i5+1,6+1
InChI Key YMAWOPBAYDPSLA-MPOCSFTDSA-N
Melting Point 262-264°C
Purity 98% by HPLC; 98% atom 15N
Solubility Soluble in Water
Appearance White Solid
Storage Store at RT

Glycyl-glycine-[15N2], an isotopically labeled dipeptide widely utilized in scientific investigations, unfolds a plethora of applications. Here are key applications of this compound presented with a high degree of perplexity and burstiness:

Metabolic Tracing: Delving into the labyrinthine domain of metabolism, glycyl-glycine-[15N2] emerges as a pivotal tracer utilized in studies that intricately map out nitrogen flux and amino acid metabolism within organisms. By introducing this precisely labeled compound, researchers embark on a journey to unravel the dynamics of both protein synthesis and degradation. The meticulous isotopic labeling enables a nuanced analysis of metabolic pathways, utilizing cutting-edge techniques such as mass spectrometry or nuclear magnetic resonance (NMR).

Nutritional Research: Within the realm of nutritional exploration, glycyl-glycine-[15N2] assumes a critical role in deciphering the intricacies of protein digestion and absorption processes. By incorporating this labeled dipeptide into studies, scientists delve deep into the enzymatic breakdown and assimilation of dietary proteins within the body. This crucial data aids in unraveling the efficiency of protein utilization from a myriad of dietary sources and under varying dietary conditions.

Proteomics: Stepping into the enigmatic realm of proteomic investigations, glycyl-glycine-[15N2] emerges as a potent tool for identifying and quantifying proteins within intricate biological samples. The isotopic label bestows a distinct mass signature that facilitates precise protein identification and quantification through advanced spectrometric techniques. This application proves invaluable for unraveling protein expression, function, and interactions across diverse biological contexts.

Enzyme Kinetics: At the vanguard of enzyme kinetics research, glycyl-glycine-[15N2] assumes a pivotal role in unraveling the enzymatic breakdown of dipeptides and peptide-based substrates. The isotopic label serves as a beacon, tracking reaction intermediates and shedding light on enzyme specificity and mechanism. Insights gleaned from these studies significantly contribute to the development of enzyme inhibitors and therapeutic agents, propelling innovation in the realm of enzymology.

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