Eliane Briand

@ebriand.bsky.social

doin' simulations (MPI-NAT Goettingen) https://eliane.br.iand.fr/

what's the blessed way to use trilinos in a project without the "kokkos_launch_compiler" & other wrapper messing with the compilation of .cu in CMake? (not just a rant, plz link blog or example projects where that works) [😅 unrelated pic 😅]

First slide for a "Why we do not use Kokkos" deck, from Sandia Lab (famously, maker of Kokkos)

thesis: LLM useful but not trillion-dollar-CAPEX useful prediction: ✨🔮 i see... a lot of cheapo H100 in your future... 🔮✨ suggested pivot: forcibly jamming the ozaki scheme into whatever im doing

Le Monde reporting that a French scientist traveling to Houston to attend a conference was denied entry to US after a search of his phone & computer revealed messages critical of Trump's science cuts, "which [says CPB] conveyed hatred of Trump & could be qualified as terrorism". Computer confiscated

Being the #Hünfeld2025 event photographer means I can't escape. Being a presenter means you can't either --- so let's connect there!

CompBioPhys@compbiophys.bsky.social · 2y ago

We are looking forward to meeting all participants online or on-site in Hünfeld very soon! 🤩 The program is now online: www.mpinat.mpg.de/workshop/hue.... For those who were not able to join this year... next workshop is scheduled for 📅 April 24-25, 2026! #Hünfeld2025 #TheoryWorkshop

Constant pH with FMM characteristics, now out! pubs.acs.org/doi/10.1021/...

Constant pH Simulation with FMM Electrostatics in GROMACS. (A) Design and Applications

The structural dynamics of biological macromolecules, such as proteins, DNA/RNA, or complexes thereof, are strongly influenced by protonation changes of their typically many titratable groups, which explains their sensitivity to pH changes. Conversely, conformational and environmental changes of the biomolecule affect the protonation state of these groups. With few exceptions, conventional force field-based molecular dynamics (MD) simulations neither account for these effects nor do they allow for coupling to a pH buffer. Here, we present design decisions and applications of a rigorous Hamiltonian interpolation λ-dynamics constant pH method in GROMACS, which rests on GPU-accelerated Fast Multipole Method (FMM) electrostatics. Our implementation supports both CHARMM36m and Amber99sb*-ILDN force fields and is largely automated to enable seamless switching from regular MD to constant pH MD, involving minimal changes to the input files. Here, the first of two companion papers describes the underlying constant pH protocol and sample applications to several prototypical benchmark systems such as cardiotoxin V, lysozyme, and staphylococcal nuclease. Enhanced convergence is achieved through a new dynamic barrier height optimization method, and high pKa accuracy is demonstrated. We use Functional Mode Analysis (FMA) and Mutual Information (MI) to explore the complex intra- and intermolecular couplings between the protonation states of titratable groups as well as those between protonation states and conformational dynamics. We identify striking conformation-dependent pKa variations and unexpected inter-residue couplings. Conformation–protonation coupling is identified as a primary cause of the slow protonation convergence notorious to constant pH simulations involving multiple titratable groups, suggesting enhanced sampling methods to accelerate convergence.

pubs.acs.org