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Interaction of formin FH2 with skeletal muscle actin. EPR and DSC studies
Authors:Tünde Kupi  Pál Gróf  Miklós Nyitrai  József Belágyi
Institution:1. Department of Biophysics, Medical School, University of Pécs, Szigeti str. 12, Pécs, 7624, Hungary
2. Department of Biophysics and Radiation Biology, Semmelweis University of Medicine, IX. T?zoltó u. 37-47, Budapest, 1095, Hungary
3. Szentágothai Research Center, Ifjúság u. 34, Pécs, 7624, Hungary
4. Office for Subsidized Research Units, Hungarian Academy of Sciences, Nádor u. 7, Budapest, 1051, Hungary
Abstract:Formins are highly conserved proteins that are essential in the formation and regulation of the actin cytoskeleton. The formin homology 2 (FH2) domain is responsible for actin binding and acts as an important nucleating factor in eukaryotic cells. In this work EPR and DSC were used to investigate the properties of the mDia1-FH2 formin fragment and its interaction with actin. MDia1-FH2 was labeled with a maleimide spin probe (MSL). EPR results suggested that the MSL was attached to a single SH group in the FH2. In DSC and temperature-dependent EPR experiments we observed that mDia1-FH2 has a flexible structure and observed a major temperature-induced conformational change at 41 °C. The results also confirmed the previous observation obtained by fluorescence methods that formin binding can destabilize the structure of actin filaments. In the EPR experiments the intermolecular connection between the monomers of formin dimers proved to be flexible. Considering the complex molecular mechanisms underlying the cellular roles of formins this internal flexibility of the dimers is probably important for manifestation of their biological functions.
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