Drug discovery is like molecular Tetris. Chemists snap atoms together, adjusting the pieces until everything fits and suddenly, a molecule makes a promising new medicine.
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Scientists simulate complete life cycle of a minimal bacterial cell
By simulating the life cycle of a minimal bacterial cell - from DNA replication to protein translation to metabolism and cell division - scientists have opened a new frontier of computer vision into ...
Drug discovery is like molecular Tetris. Chemists snap atoms together, adjusting the pieces until everything fits, and ...
Over the past decade, however, a wave of technological advances has begun to expand the druggable proteome. These include covalent inhibitors (such as sotorasib), chemical proteomics, and AI-enabled ...
By simulating the life cycle of a minimal bacterial cell, from DNA replication to protein translation to metabolism and cell division, scientists have opened a new frontier of computer vision into the ...
Proteoforms, the diverse molecular variants of proteins, are key to understanding cellular functions, disease mechanisms, and ...
By simulating the life cycle of a minimal bacterial cell—from DNA replication to protein translation to metabolism and cell ...
Chung’s group captured the transition period directly by improving the time resolution of a method called single-molecule ...
Crystal jellyfish have an eerie beauty: thanks to a natural protein, they emit a faint green glow. For decades, researchers ...
A newly designed optical centrifuge allows scientists to control molecular rotation inside superfluid helium nano-droplets.
Buford the Gila monster at Caldwell Zoo plays a surprising role in medical research, with the venom contributing to diabetes and weight loss medications.
We work on accelerating the discovery of small molecules through AI at all steps of the Design-Make-Test cycle. This includes models to predict molecular properties, generative models to design new ...
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