Publication | Closed Access
Design, synthesis, tandem mass spectrometric sequencing and biological activity of NGF mimetics
10
Citations
45
References
1996
Year
Bioorganic ChemistryBiomolecular ToolPeptide EngineeringBiological Mass SpectrometryChemical BiologyAnalytical InstrumentationBioanalysisAnalytical ChemistryProteomicsBiological ActivityBiochemistryPutative Receptor-binding EpitopeMetabolomicsComputational Mass SpectrometryPharmacologyBiomolecular EngineeringNgf MimeticsNatural SciencesPeptide LibraryMass SpectrometryPeptide SynthesisAutomated Edman DegradationProtein EngineeringMicrobiologyMedicineNeuropeptides
Nine low molecular weight nerve growth factor (NGF)-like peptides have been designed to mimic the putative receptor-binding epitope of NGF defined by two beta-hairpin loops. Eight different spacers were used as variable links between the beta-loop amino acid residues, which from mutagenesis experiments were found to play an important role in the biological activity of NGF. These spacers were amino acids, natural or non-natural, differing in length (5-13 A) and polarity. The peptides were synthesized via the Fmoc solid-phase peptide synthesis and purified by reversed-phase HPLC. Their primary sequences were analyzed by a combination of automated Edman degradation and mass spectrometry. The peptides were tested using two different biological assays, the fibre outgrowth from chick embryonic sympathetic ganglia and the PC12 cell differentiation assay. Weak antagonistic effects could be observed for some peptides.
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