Understanding domain swapping in the c-Src SH3 domain through hinge-loop mutagenesis
Metadatos
Mostrar el registro completo del ítemAutor
Salinas-García, M. Carmen; Plaza-Garrido, Marina; Martínez Herrerías, José Cristóbal; Cámara-Artigas, AnaEditorial
Wiley-Blackwell Publishing, Inc.
Materia
SH3 domains 3D domain swapping hinge loop
Fecha
2025-09Referencia bibliográfica
Salinas-Garcia, M. C., Plaza-Garrido, M., Martinez, J. C. & Camara-Artigas, A. (2025). Understanding domain swapping in the c-Src SH3 domain through hinge-loop mutagenesis. Acta Cryst. Vol. 81, Part 9, 492-510. https://doi.org/10.1107/S2059798325006977
Patrocinador
Ministerio de Ciencia, Innovación y Universidades - FEDER (BIO2016-78020-R); Consejería de Universidades, Investigación e Innovación, Junta de Andalucía - FEDER (UAL18-BIO-B005-B, CV20-19149); Junta de Andalucía - FEDER (C-EXP-295-UGR23); Universidad de Almería (Fellowship PPI 2018)Resumen
The c-Src SH3 domain is one of the best-characterized modular domains from a
biophysical and structural point of view. This SH3 domain displays noncanonical
alternative folding, forming 3D domain-swapped oligomers and amyloid fibrils.
These features make this small protein an ideal model for studying these
phenomena. Residues in the regions that favour unfolding of the monomer and
those in the hinge loop have been deeply studied in proteins undergoing 3D
domain swapping. To study the role of these residues in the unfolding of the
c-Src SH3 domain, we have constructed several chimeric proteins by interchanging residues in the RTand n-Src loops between the c-Src SH3 and Abl SH3
domains. The RT (the region between β1 and β2) and n-Src (the region between
β2 and β3) loops create two sides of the shallow hydrophobic groove where
proline-rich motif sequences bind to the SH3 domain. In addition to the
structural information, we have performed a biophysical characterization of
these chimeric constructs. The c-Src SH3 domain bearing the loops of the Abl
SH3 shows minor changes in stability. Interestingly, these replacements do not
prevent the formation of domain-swapped dimers. However, the interchange of
one or two loops within the Abl SH3 domain produces a noticeable reduction in
its stability but does not promote the formation of 3D domain-swapped oligomers. Thus, our results indicate that although the composition of the hinge loop
is likely to play a role in the interchange of structural elements to form the
intertwined dimers, it is not the sole driving force in their formation.





