HomeMolecular BiologyHistone Code: Chromatin Compaction Simulator

Histone Code: Chromatin Compaction Simulator

Interactive 3D nucleosome-chain simulator: tune histone acetylation and H3K9 methylation and watch chromatin fold between an open, transcription-factor-accessible 'beads on a string' state and a compact heterochromatin fiber.

Molecular Biology3DAdvanced60 FPS📱 Mobile-adapted⇄ 2D version
epigenetics-biology ↗ Open standalone

The same DNA sequence can be read as active or silent depending only on chemical marks stamped onto the histone proteins it's wrapped around. This simulator renders a chain of nucleosomes as a real physical system: adjacent beads are linked by springs modeling linker DNA, and non-adjacent beads attract through a Lennard-Jones-like potential whose strength depends on two sliders — histone acetylation, which neutralizes tail charge and opens the fiber, and H3K9 methylation, which recruits HP1-style bridging and compacts it. Each nucleosome carries a fixed, sequence-like susceptibility, so heterochromatin domains emerge unevenly along the chain exactly as they do in a real nucleus. Transcription-factor probes random-walk through the scene and can only dock where local compaction is low enough to be physically accessible, and live readouts track overall compaction, chromatin accessibility, and cumulative TF binding events as you tune the two enzyme activities.

⚙ Under the hood

Tune histone acetylation and H3K9 methylation on a physically simulated nucleosome chain and watch chromatin fold between open, transcription-factor-accessible euchromatin and compact, silenced heterochromatin.

epigeneticschromatinhistonesDNA methylationgene regulationmolecular biology

3D · Three.js / WebGL renderer · 60 FPS target · runs fully client-side, no install

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