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Removal and Replacement of Endogenous Ligands from Lipid-Bound Proteins and Allergens
Published on: February 24, 2021
Beta-lactoglobulin structure and retinol binding changes in presence of anionic and neutral detergents
Asghar Taheri-Kafrani1, Abdol-Khalegh Bordbar, Seyed Habib-Allah Mousavi
1Laboratory of Biophysical Chemistry, Department of Chemistry, University of Isfahan, Isfahan, 81746-73441, Islamic Republic of Iran.
Insights
Bovine beta-lactoglobulin (beta-LG) interactions with surfactants sodium dodecyl sulfate and Triton X-100 were studied. Surfactant binding did not alter beta-LG
Area of Science:
- Biochemistry
- Protein Structure
- Molecular Interactions
Background:
- Bovine beta-lactoglobulin (beta-LG) forms complexes with lipids in milk.
- The structure-function relationship of beta-LG remains incompletely understood.
Purpose of the Study:
- Investigate structural changes in beta-LG variant A upon interaction with anionic (SDS) and nonionic (Triton X-100) surfactants.
- Assess the impact of these surfactants on retinol binding by beta-LG.
Main Methods:
- UV-vis spectroscopy
- Fluorescence spectroscopy
- Isothermal titration calorimetry (ITC)
Main Results:
- SDS exhibited a higher denaturing effect at acidic pH due to increased beta-LG positive charges.
- Triton X-100 showed non-specific hydrophobic interactions with beta-LG across all studied pH.
- SDS/beta-LG interactions were endothermic, while Triton X-100/beta-LG interactions were exothermic.
- Retinol binding properties of beta-LG remained largely unchanged in the presence of both surfactants.
Conclusions:
- Surfactant binding does not significantly alter the conformation of beta-LG's retinol-binding site.
- The study elucidates beta-LG's response to different surfactant types, contributing to understanding its functional properties.
Abstract:
Bovine beta-lactoglobulin (beta-LG) in vivo (in milks) has been found in complexes with lipids such as butyric and oleic acids. To elucidate the still unknown structure-function relationship in this protein, the structural changes of beta-lactoglobulin variant A (beta-LG A) in the presence of anionic surfactant such as sodium n-dodecyl sulfate (SDS) and in the presence of nonionic surfactant such as Triton X-100 have been investigated. Subsequently, the retinol binding by beta-LG has been investigated in the presence of various amounts of these surfactants as its binding indicator. The results of UV-vis and fluorescence studies show a higher denaturating effect of SDS at acid pH that can be due to greater positive charges of beta-LG at this pH indicating also the nonspecific hydrophobic interactions of Triton X-100 with beta-LG at all studied pHs. Isothermal titration calorimetry (ITC) measurements indicate the endothermic nature of beta-LG/SDS interactions and the exothermic nature of Triton X-100/beta-LG interactions. The analysis of the binding data demonstrates the absence of considerable changes in retinol binding properties of beta-LG in the presence of various amounts of these surfactants. This implies that surfactant binding does not change the conformation of beta-LG in the regions defining the retinol-binding site.
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