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Author Spotlight: Unveiling the Structural and Dynamic Aspects of Glycan Molecular Recognition
Published on: May 17, 2024
Impact of galectin-1's redox state on its lectin activity and monomer-dimer equilibrium. Focusing on oxidized Gal-1
Tatiana Staroňová1, Jitka Holčáková2, Petr Voňka2
1Institute of Biophysics, The Czech Academy of Sciences, v.v.i., Královopolská 135, 61200 Brno, Czech Republic.
Abstract:
Galectin-1 (Gal-1) displays unique sensitivity to oxidative inactivation which appears critical in regulating its spatial and temporal activity. The two physicochemical states, i.e. monomer-dimer equilibrium and redox states, are related to Gal-1 varying functionality. In this work, we used chronopotentiometric stripping analysis, intrinsic fluorescence spectroscopy, and mobility shift assay to follow changes in the structure and lectin activity of reduced and oxidized Gal-1 forms. Our results show that monomers and dimers are similarly distributed under mild reduction and oxidation conditions. Gal-1 after its oxidation consists of at least three different monomeric forms while reduced Gal-1 only one. Lectin activity, affinity to N-acetyllactosamine, is relatively similar for low Gal-1 concentrations for both, reduced and oxidized Gal-1. However, at higher Gal-1 concentrations, we observed a ten times higher affinity for reduced than oxidized form. Further, our data indicate that the monoclonal antibodies bind preferentially to Gal-1 dimers and specifically to only some forms of its oxidized form.
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