Aug 2026· Journal of Physical Chemistry B· Vol 130 32, pp.
8212-8226
· 0 citations· 52 references
Medicine
TL;DR
An extension of the TAiBP approach for providing a relevant description of the conformational landscapes of IDRs in the cases where residual dipolar couplings (RDC) have been measured, and comparing the descriptions of the conformational space obtained using TAiBP and classical approaches in the literature are compared.
Abstract
An accurate description of the conformational space of intrinsically disordered regions (IDR) is essential for understanding the functions of these regions, in particular in cell signaling. The characterization of the conformational space of IDR must deal with the presence of highly variable conformations of similar energy, which increases the complexity of the conformational exploration. The purely geometric Threading-Augmented interval Branch-and-Prune (TAiBP) approach allows us to systematically enumerate the conformations of intrinsically disordered proteins and to determine a set of conformations representative of the conformational space. The present work has two purposes: (i) proposing an extension of the TAiBP approach for providing a relevant description of the conformational landscapes of IDRs in the cases where residual dipolar couplings (RDC) have been measured, and (ii) comparing the descriptions of the conformational space obtained using TAiBP and classical approaches in the literature. The generation of peptide representative conformations was realized using, on the one hand, ϕ,ψ input regions of the Ramachandran diagram, obtained from a statistical analysis of the δ2D predictions, and on the other hand, secondary structure elements defined by a consensus between residual dipolar couplings (RDC) and the chemical shift index (CSI). A maximum-parsimony ensemble reweighting is proposed to filter the protein conformations by the residual dipolar coupling (RDC) values, based on non-negative least-squares (nnls) to select conformations. The RDC filtering efficiency is directly related to the resolution of the clustering during the assembly step of TAiBP. The generation of TAiBP conformations from the δ2D and CSI inputs, followed by the RDC filtering, provides conformations in general agreement with the previously published results. The filtering by residual dipolar couplings induces more localized positions of the secondary structure elements in front of the CSI-RDC consensus elements.
An improved force field is developed, derived from its parent, Amber ff24EXP-GA, and its evaluation against Amber ff14SB and other contemporary force fields, such as CHARMM36m, in capturing the empirically determined conformational properties of unfolded systems: short peptides that serve as model systems for IDPs, and...
A straightforward method for the determination of dynamic domains from pairs of conformations or general conformational ensembles of proteins is presented. The method applies metric multi-dimensional scaling (MDS) to distance-differences or root-mean square-fluctuations of inter-atomic distances (RMSFIDs). The approach...
Steven Hayward· Proteins: Structure, Functio...· 0 citations
Understanding the dynamic behavior of fuzzy complexes formed by intrinsically disordered proteins (IDPs) is challenging due to their conformational flexibility. Nuclear Magnetic Resonance (NMR) structural bundles satisfy experimental constraints and inherently provide an overview of alternative conformations in solutio...
M. Fernández, María Clara Bastien, Franco G. Tavolaro et al.· Frontiers in Bioinformatics· 0 citations
Proteins naturally adopt multiple conformations in mediating cellular processes, and ensemble models are used to fit X-ray crystallography data that captures this heterogeneity. In practice, ensemble refinement produces only minor improvements in agreement with experimental data (Rfree) over single-conformation models....
Spencer K. Passmore, James M. Holton, N. Zatsepin et al.· bioRxiv· 0 citations
This study illustrates how subtle residue-localized conformational bias can affect the overall protein conformational dynamics influencing protein-protein interactions that are important for cellular functions and related to diseases.
Abir Ben Bouzayene, M. Sai, Alexis Jouin et al.· Angewandte Chemie· 0 citations
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