4.2 Article

Equilibrium Between Dimeric and Monomeric Forms of Human Epidermal Growth Factor is Shifted Towards Dimers in a Solution

期刊

PROTEIN JOURNAL
卷 41, 期 2, 页码 245-259

出版社

SPRINGER
DOI: 10.1007/s10930-022-10051-y

关键词

Epidermal growth factor; Peptide dimerization; Dimer dissociation; Amino acid substitution; Secondary structure

资金

  1. Belarusian Republican Foundation for Fundamental Research [B20M-025]

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This study reveals the existence of EGF dimers under physiological conditions and identifies the involvement of the EGF C-terminal part in dimer formation. The substitution of D46G increases the stability of EGF dimers and leads to elongation and rearrangement of the intermolecular beta-structure.
An interplay between monomeric and dimeric forms of human epidermal growth factor (EGF) affecting its interaction with EGF receptor (EGFR) is poorly understood. While EGF dimeric structure was resolved at pH 8.1, the possibility of EGF dimerization under physiological conditions is still unclear. This study aimed to describe the oligomeric state of EGF in a solution at physiological pH value. With centrifugal ultrafiltration followed by blue native gel electrophoresis, we showed that synthetic human EGF in a solution at a concentration of 0.1 mg/ml exists mainly in the dimeric form at pH 7.4 and temperature of 37 degrees C, although a small fraction of its monomers was also observed. Based on bioinformatics predictions, we introduced the D46G substitution to examine if EGF C-terminal part is directly involved in the intermolecular interface formation of the observed dimers. We found a reduced ability of the resulting EGF D46G dimers to dissociate at temperatures up to 50 degrees C. The D46G substitution also increased the intermolecular antiparallel beta-structure content within the EGF peptide in a solution according to the CD spectra analysis that was confirmed by HATR-FTIR results. Additionally, the energy transfer between Tyr and Trp residues was detected by fluorescence spectroscopy for the EGF D46G mutant, but not for the native EGF. This allowed us to suggest the elongation and rearrangement of the intermolecular beta-structure that leads to the observed stabilization of EGF D46G dimers. The results imply EGF dimerization under physiological pH value and temperature and the involvement of EGF C-terminal part in this process.

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