Determining accurate conformational ensembles of intrinsically disordered proteins at atomic resolution

K Kaushik Borthakur T Thomas R. Sisk F Francesco P. Panei M Massimiliano Bonomi (Institut Pasteur, Université Paris Cité, CNRS UMR 3528, Computational Structural Biology Unit 2 , Paris,) P Paul Robustelli

Abstract

Abstract Determining accurate atomic resolution conformational ensembles of intrinsically disordered proteins (IDPs) is extremely challenging. Molecular dynamics (MD) simulations provide atomistic conformational ensembles of IDPs, but their accuracy is highly dependent on the quality of physical models, or force fields, used. Here, we demonstrate how to determine accurate atomic resolution conformational ensembles of IDPs by integrating all-atom MD simulations with experimental data from nuclear magnetic resonance (NMR) spectroscopy and small-angle x-ray scattering (SAXS) with a simple, robust and fully automated maximum entropy reweighting procedure. We demonstrate that in favorable cases, where IDP ensembles obtained from different MD force fields are in reasonable initial agreement with experimental data, reweighted ensembles obtained with this approach converge to highly similar conformational distributions. The maximum entropy reweighting procedure presented here facilitates the integration of MD simulations with extensive experimental datasets and demonstrates progress towards the calculation of accurate, force-field independent conformational ensembles of IDPs at atomic resolution.

Article Details

Volume / Issue Vol. 16, Issue 1
Published October 10, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (5)

K

Kaushik Borthakur

T

Thomas R. Sisk

F

Francesco P. Panei

M

Massimiliano Bonomi

Institut Pasteur, Université Paris Cité, CNRS UMR 3528, Computational Structural Biology Unit 2 , Paris,

P

Paul Robustelli