InterMap: Accelerated Detection of Interaction Fingerprints on Large-Scale Molecular Ensembles
Fajardo-Diaz, E.; Bignon, E.; Dehez, F.; Karami, Y.; Gonzalez-Aleman, R.
Show abstract
MotivationMolecular dynamics is a key technique for exploring biomolecular systems at the atomic level. The rapid growth in accessible system sizes and timescales has intensified the need for efficient post-processing methods that extract meaningful insights from the resulting data. Interaction fingerprint (IFP) analyses are a valuable tool for elucidating key atomic interactions within molecular ensembles, yet current specialized software often struggle with extensive trajectories or complex systems. Here, we introduce InterMap, a Python package designed to accelerate IFP detection on large-scale molecular ensembles. ResultsBy actively exploiting k-d trees, InterMap efficiently handles the massive amount of distance calculations necessary to detect IFPs, particularly when dealing with intra-molecular interactions. The seamless integration with MDAnalysis ensures broad format compatibility and allows using SMARTS patterns for flexible interaction definitions. InterMap adopts a deeply compressed binary encoding to manage IFPs, which makes it very memory-friendly. Furthermore, convenient interactive visualizations are provided to enhance data interpretation through a locally hosted web-browser application. Benchmark results indicate that InterMap significantly outperforms existing tools for processing complex biomolecular systems, achieving up to a 99% reduction in both runtime and peak memory usage. AvailabilityInterMaps code and issue tracker are available at https://github.com/Delta-Research-Team/intermap.git, while documentation and tutorials can be found at https://delta-research-team.github.io/intermap/. Contactroy.gonzalez-aleman@inria.fr, yasaman.karami@inria.fr Supplementary informationSupplementary data are available at Nucleic Acid Research online.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- High-performance analysis of biomolecular containers to measure small-molecule transport, transbilayer lipid diffusion, and protein cavities 97%
- Scaling k-Means for Multi-Million Frames: A Stratified NANI Approach for Large-Scale MD Simulations 96%
- Hierarchical Extended Linkage Method (HELM)'s Deep Dive into Hybrid Clustering Strategies 96%
Similar papers in this journal
- MDCompress: better, faster compression of molecular dynamics simulation trajectories 95%
- TransportTools: a library for high-throughput analyses of internal voids in biomolecules and ligand transport through them 95%
- pydca v1.0: a comprehensive software for Direct Coupling Analysis of RNA and Protein Sequences 95%
Similar papers in this journal
- MDM-TASK-web: MD-TASK and MODE-TASK web server for analyzing protein dynamics 98%
- Predicting stable binding modes from simulated dimers of the D76N mutant of β2-microglobulin 93%
- A Molecular Dynamics Protocol for Rapid Prediction of EGFR Overactivation and Its Application to the Rare Mutations S768I, S768N, D761N 92%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.