Organic & Biomolecular Chemistry · 2015 · 35 citations · 23 references
GlycobiologyMolecular BiologyChemical BiologyInsulin SignalingInsulin AnaloguesMedicinal ChemistryProtein FoldingBiochemistryG Protein-coupled ReceptorInsulin ManagementCysa7–cysb7 Disulfide BondInsulin Hormone1,2,3-Triazole LinkerPharmacologyCuaac Click ChemistryInsulin GlargineNatural SciencesPeptide LibraryPeptide SynthesisMedicineCarbohydrate-protein InteractionDrug Discovery
Two analogues of insulin glargine containing a 1,4-disubstituted 1,2,3-triazole group in place of the CysA7-CysB7 disulfide bond were prepared using CuAAC click chemistry to efficiently join the peptide chains. The resulting insulin analogues were analysed by circular dichroism spectroscopy to assess whether this modification compromised the folding pattern of the native form. Investigations, including an in vivo murine study, revealed that these analogues were not biologically active and that the structures were significantly unfolded, an outcome which suggests that maintaining a precise inter-chain distance is critical to the structure of the insulin hormone.
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The disulphide bonds of insulin
A. Ryle, Frederick Sanger, L. Smith et al. · Biochemical Journal · 1955 · 928 citations · Full text
Structure of Rhombohedral 2 Zinc Insulin Crystals
Margaret Adams, Tom L. Blundell, E.J. Dodson et al. · Nature · 1969 · 499 citations
Materials Science, Inorganic Chemistry, Crystal Structure +7
How insulin engages its primary binding site on the insulin receptor
John G. Menting, Jonathan Whittaker, Mai B. Margetts et al. · Nature · 2013 · 420 citations · Full text
Signal Transduction, Biochemistry, G Protein-coupled Receptor +9