Unraveling the folding and dimerization properties of the human FoxP subfamily of transcription factors.

Victor Castro-Fernandez, Pablo Villalobos, Alonso I Carvajal, Jorge Babul, César A Ramírez-Sarmiento, Exequiel Medina

Journal: FEBS letters 2023;597(14):1894-1905

PMID: 37199668

Abstract

Human FoxP proteins share a highly conserved DNA-binding domain that dimerizes via three-dimensional domain swapping, although showing varying oligomerization propensities among its members. Here, we present an experimental and computational characterization of all human FoxP proteins to unravel how their amino acid substitutions impact their folding and dimerization mechanism. We solved the crystal structure of the forkhead domain of FoxP4 to then perform a comparison across all members, finding that their sequence changes impact not only the structural heterogeneity of their forkhead domains but also the protein-protein association energy barrier. Lastly, we demonstrate that the accumulation of a monomeric intermediate is an oligomerization-dependent feature rather than a common aspect of monomers and dimers in this protein subfamily.

© 2023 Federation of European Biochemical Societies.

Address: Departamento de Biología, Facultad de Ciencias, Universidad de Chile, Santiago, Chile.; Institute for Biological and Medical Engineering, Schools of Engineering, Medicine and Biological Sciences, Pontificia Universidad Católica de Chile, Santiago, Chile.; ANID - Millennium Science Initiative Program - Millennium Institute for Integrative Biology (iBio), Santiago, Chile.

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