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Despite significant advances in resolution, the potential for cryo-electron microscopy (EM) to be used in determining the structures of protein-drug complexes remains unrealized. Determination of accurate structures and coordination of bound ligands necessitates simultaneous fitting of the models into the density envelopes, exhaustive sampling of the ligand geometries, and, most importantly, concomitant rearrangements in the side chains to optimize the binding energy changes. In this article, we present a flexible-fitting pipeline where molecular dynamics flexible fitting (MDFF) is used to refine structures of protein-ligand complexes from 3 to 5 Å electron density data. Enhanced sampling is employed to explore the binding pocket rearrangements. To provide a model that can accurately describe the conformational dynamics of the chemically diverse set of small-molecule drugs inside MDFF, we use QM/MM and neural-network potential (NNP)/MM models of protein-ligand complexes, where the ligand is represented using the QM or NNP model, and the protein is represented using established molecular mechanical force fields (e.g., CHARMM). This pipeline offers structures commensurate to or better than recently submitted high-resolution cryo-EM or X-ray models, even when given medium to low-resolution data as input. The use of the NNPs makes the algorithm more robust to the choice of search models, offering a radius of convergence of 6.5 Å for ligand structure determination. The quality of the predicted structures was also judged by density functional theory calculations of ligand strain energy. This strain potential energy is found to systematically decrease with better fitting to density and improved ligand coordination, indicating correct binding interactions. A computationally inexpensive protocol for computing strain energy is reported as part of the model analysis protocol that monitors both the ligand fit as well as model quality.
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http://dx.doi.org/10.1021/acs.jcim.9b01167 | DOI Listing |
Cancer Med
September 2025
Adem Crosby Cancer Centre, Department of Medical Oncology, Division of Cancer Care Services, Sunshine Coast University Hospital, Birtinya, Queensland, Australia.
Background: The three main chemotherapy regimens for people with unresectable pancreatic cancer include modified FOLFIRINOX (comprising oxaliplatin, irinotecan and fluorouracil, denoted mFFX), gemcitabine with nab-paclitaxel (GnP), and single-agent gemcitabine (GEM). We explored characteristics associated with the type of chemotherapy and variations in survival.
Materials And Methods: Records for people with unresected pancreatic adenocarcinoma between 2018 and 2022 treated with first-line mFFX, GnP or GEM were extracted from the population-based Queensland Oncology Repository.
J Chem Inf Model
September 2025
RIKEN Pioneering Research Institute, 2-1 Hirosawa, Wako-shi, Saitama 351-0198, Japan.
Reliable modeling of protein structures from a cryo-EM density map is one of the central issues in structural biology. Typically, the constructed model is refined using a flexible fitting method combined with molecular dynamics, where a biasing potential is introduced to guide the protein structure toward the density map. However, the appropriate force constant for the biasing potential is generally unknown a priori.
View Article and Find Full Text PDFJ Anim Sci
September 2025
College of Animal Science and Technology, Northwest A&F University, Yangling 712100, China.
The shapes of lactation curves are affected by genetic and environmental factors, and flexible models are required to fit such curves. This study aimed to compare the effects of the Gaussian process regression model (Gaussian model) for fitting lactation curves Saanen dairy goats versus the parametric Wood's model. In addition, we investigated effects of environmental factors on the shape of lactation curves.
View Article and Find Full Text PDFMethodsX
December 2025
School of Life Sciences, University of Nottingham, Nottingham NG7 2UH, UK.
We present a generally applicable method for segmented regression analysis, which is suitable for describing data that follow two distinct functions that meet at an unknown transition or break point and is particularly useful for detecting thresholds. Although segmented regression analysis is available in Matlab and R, it requires specialist knowledge beyond the expertise of many researchers. We illustrate a method for fitting experimental data with two distinct segmented linear functions using SOLVER, freely available with Microsoft Excel.
View Article and Find Full Text PDFJ Chem Phys
September 2025
Department of Physics, Stockholm University, 10691 Stockholm, Sweden.
The water molecule's electronic Cartesian multipole moment and polarizability tensors have been fitted with Gaussian process regression to the internal coordinates and are used to evaluate accurate electrostatic, induction, and dispersion energy components between flexible molecules. The model yields a handful of damping and scaling parameters that were adjusted for the energy components to agree with 2-body symmetry-adapted perturbation theory decomposition and then fine-tuned in order for the total energy to agree with CCSD(T) for small clusters. We present a simple algorithm for rotating symmetric Cartesian tensors and employ a dispersion potential based on multipole polarizabilities.
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