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giuseppe-chen.bsky.social

@giuseppe-chen.bsky.social
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Reposted by @giuseppe-chen.bsky.social
chipotlab.bsky.social @chipotlab.bsky.social · 10/09/2026
No predefined reaction coordinate. No mechanistic guesswork. No massive sampling campaign. Gen-COMPAS reconstructs biomolecular transition pathways from endpoint structures alone. Protein folding, allostery, membrane transport. Now in Nature. @nature.com @springernature.com
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Reposted by @giuseppe-chen.bsky.social
chipotlab.bsky.social @chipotlab.bsky.social · 30/01/2026
Rare molecular events can often follow several competing pathways. Our new work introduces an iterative framework that can disentangle these pathways and identifies the dominant transition routes. pubs.acs.org/doi/10.1021/... @pubs.acs.org @giuseppe-chen.bsky.social @radutalmazan.bsky.social
pubs.acs.org
Following the Committor Flow: A Data-Driven Discovery of Transition Pathways
The discovery of transition pathways to unravel distinct reaction mechanisms and, in general, rare events that occur in molecular systems is still a challenge. Recent advances have focused on analyzin...
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Reposted by @giuseppe-chen.bsky.social
chipotlab.bsky.social @chipotlab.bsky.social · 09/01/2026
"One for All, All for One: A Unified Framework for Free-Energy Calculations" Introducing Well-tempered metadynamics-xABF (WTM-xABF) for geometrical, alchemical & generalized‑ensemble sampling—faster, robust, minimal tuning. pubs.acs.org/doi/10.1021/... @pubs.acs.org
pubs.acs.org
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Reposted by @giuseppe-chen.bsky.social
chipotlab.bsky.social @chipotlab.bsky.social · 09/01/2026
GPU‑accelerated constant‑pH MD/MC is now available in NAMD! pubs.acs.org/doi/10.1021/... @pubs.acs.org
pubs.acs.org
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Reposted by @giuseppe-chen.bsky.social
chipotlab.bsky.social @chipotlab.bsky.social · 12/01/2026
"From Static Pathways to Dynamic Mechanisms: A Committor-Based Data-Driven Approach to Chemical Reactions" Check out our work using a committor‑based workflow coupled with a high‑level MLIP to reveal dynamic effects in chemical reactions. pubs.acs.org/doi/10.1021/... @pubs.acs.org
pubs.acs.org
From Static Pathways to Dynamic Mechanisms: A Committor-Based Data-Driven Approach to Chemical Reactions
As computational chemistry methods evolve, dynamic effects have been increasingly recognized to govern chemical reaction pathways in both organic and inorganic systems. Here, we introduce a committor-...
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Reposted by @giuseppe-chen.bsky.social
chipotlab.bsky.social @chipotlab.bsky.social · 30/09/2025
Did you ever want to try out enhanced sampling with ABF? Have a look at our newest tutorial to get started! doi.org/10.1021/acs.... @radutalmazan.bsky.social, Haohao Fu, Mengchen Zhou, Jérôme Hénin, James C. Gumbart and Christophe Chipot
doi.org
Calculating Free-Energy Differences Using an Average Force: A Tutorial for Adaptive Biasing Force Simulations
The purpose of this tutorial is to get the reader familiarized with the calculation of a free-energy change along a reaction-coordinate (RC) model through a number of applications of variants of the importance-sampling adaptive biasing force algorithm. The reversible sodium-chloride ion pairing in aqueous solution serves as an introductory example, wherein the RC model is defined as the distance separating the ions. For the reversible folding of the short peptide deca-alanine, alternative collective variables are considered to map the conformational free-energy landscape. The importance-sampling algorithm is then applied to the transfer of an ethanol molecule across the water liquid–vapor interface to estimate its hydration free energy. The results are compared to those of an alchemical transformation using free-energy perturbation calculations. In the final application, the Ramachandran free-energy surface underlying the conformational equilibrium of N-methyl-N′-acetylalanylamide is determined in two dimensions, comparing single- and multiple-walker strategies.
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Reposted by @giuseppe-chen.bsky.social
Nature Computational Science @natcomputsci.nature.com · 22/07/2025
The corresponding News & Views from @gervasiolab.bsky.social is out now! www.nature.com/articles/s43... 🔓https://rdcu.be/exl41
nature.com
Learning committor-consistent collective variables - Nature Computational Science
An artificial neural network-based strategy is developed to learn committor-consistent transition pathways, providing insight into rare events in biomolecular systems.
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Reposted by @giuseppe-chen.bsky.social
Nature Computational Science @natcomputsci.nature.com · 07/07/2025
Out now! Chrisophe Chipot and colleagues develop a neural-network approach for committor-consistent enhanced-sampling simulations of rare events. www.nature.com/articles/s43... 🔓https://rdcu.be/evcjW
nature.com
Iterative variational learning of committor-consistent transition pathways using artificial neural networks - Nature Computational Science
A neural network approach grounded in transition-path theory is shown to uncover committor-consistent transition pathways, resolving competing mechanisms across dynamical regimes and advancing the mod...
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Reposted by @giuseppe-chen.bsky.social
Nature Computational Science @natcomputsci.nature.com · 18/06/2025
📢Out now! Haohao Fu and colleagues introduce a high-throughput, formally exact method for absolute binding free energy calculations. #chemsky www.nature.com/articles/s43... 🔓https://rdcu.be/erBRm
nature.com
A formally exact method for high-throughput absolute binding-free-energy calculations - Nature Computational Science
A thermodynamic cycle is proposed that limits protein–ligand relative motion and boosts the efficiency of absolute binding-free-energy calculations four- to eightfold, without compromising theoretical...
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