Residue-Level Energetic Analysis of Transient Misfolding in the Whirlin PDZ Tandem Reveals a Possible Connection to an AlphaFold-Predicted Alternative Topology

Multidomain proteins may populate transient misfolded states that compete with productive folding, but the molecular determinants of these intermediates remain poorly understood. Using the tandem PDZ domains of the scaffolding protein whirlin, in which a misfolded intermediate accumulates only when both domains are denatured, we combined systematic mutagenesis with a thermodynamic framework analogous to double-mutant cycle analysis. Analysis of ~70 mutations identified residues displaying significant non-additive energetic effects, defining an interaction network concentrated within the connecting hairpins, PDZ2, and a few positions at the PDZ1 interface. Interestingly, AlphaFold predicted an alternative domain-swapped topology differing from the experimentally determined structure primarily within these same regions. Although the experimental data do not establish the structure of the misfolded intermediate, this correspondence suggests that the predicted alternative topology may provide a possible structural interpretation of the experimentally identified energetic determinants. Our findings provide a residue-level characterization of the energetic determinants of transient misfolding in a multidomain protein and suggest a possible connection between these determinants and alternative structural arrangements.

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Publication Details

Journal
International Journal of Molecular Sciences
Published
2026-09-24
DOI
https://doi.org/10.3390/ijms27198509
Primary Topic
Protein Structure and Dynamics
Type
article
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article

Residue-Level Energetic Analysis of Transient Misfolding in the Whirlin PDZ Tandem Reveals a Possible Connection to an AlphaFold-Predicted Alternative Topology

Stefano Gianni, Francesca Malagrinò, Angelo Toto, Laura Caldarelli et al.
International Journal of Molecular Sciences
Protein Structure and Dynamics
article

Residue-Level Energetic Analysis of Transient Misfolding in the Whirlin PDZ Tandem Reveals a Possible Connection to an AlphaFold-Predicted Alternative Topology

Stefano Gianni, Francesca Malagrinò, Angelo Toto, Laura Caldarelli, Valeria Pennacchietti, Julian Toso, Mariana Di Felice, Eduarda Santos Ventura
article en

Abstract

Multidomain proteins may populate transient misfolded states that compete with productive folding, but the molecular determinants of these intermediates remain poorly understood. Using the tandem PDZ domains of the scaffolding protein whirlin, in which a misfolded intermediate accumulates only when both domains are denatured, we combined systematic mutagenesis with a thermodynamic framework analogous to double-mutant cycle analysis. Analysis of ~70 mutations identified residues displaying significant non-additive energetic effects, defining an interaction network concentrated within the connecting hairpins, PDZ2, and a few positions at the PDZ1 interface. Interestingly, AlphaFold predicted an alternative domain-swapped topology differing from the experimentally determined structure primarily within these same regions. Although the experimental data do not establish the structure of the misfolded intermediate, this correspondence suggests that the predicted alternative topology may provide a possible structural interpretation of the experimentally identified energetic determinants. Our findings provide a residue-level characterization of the energetic determinants of transient misfolding in a multidomain protein and suggest a possible connection between these determinants and alternative structural arrangements.

International Journal of Molecular SciencesVol. 27(19)
University of L'Aquila (IT), San Salvatore Hospital (IT), Istituto Pasteur (IT)
Openalex Percentile: Top 19%
Protein Structure and Dynamics
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