Analysis of the conformation and thermal stability of the high-affinity IgE Fc receptor β chain polymorphic proteins

July 28, 2017

Title

Analysis of the conformation and thermal stability of the high-affinity IgE Fc receptor β chain polymorphic proteins

Author

Tomoyoshi Terada, Teppei Takahashi, Hajime Arikawa, Seiichi Era

Year

2016

Journal

Bioscience, Biotechnology, and Biochemistry

Abstract

The high-affinity IgE Fc receptor (FcεRI) β chain acts as a signal amplifier through the immunoreceptor tyrosine-based activation motif in its C-terminal intracellular region. Polymorphisms in FcεRI β have been linked to atopy, asthma, and allergies. We investigated the secondary structure, conformation, and thermal stability of FcεRI β polymorphic (β-L172I, β-L174V, and β-E228G) proteins. Polymorphisms did not affect the secondary structure and conformation of FcεRI β. However, we calculated Gibbs free energy of unfolding (ΔGunf) and significant differences were observed in ΔGunf values between the wild-type FcεRI β (β-WT) and β-E228G. These results suggested that β-E228G affected the thermal stability of FcεRI β. The role of β-E228G in biological functions and its involvement in allergic reactions have not yet been elucidated in detail; therefore, differences in the thermal stability of β-E228G may affect the function of FcεRI β.

Instrument

J-820

Keywords

Circular dichroism, Protein folding, Secondary structure, Thermal stability, Thermodynamics, Biochemistry