Most drugs work by fitting into a protein the way a key fits a lock. The protein has a pocket — the binding site — and the drug molecule, the ligand, has to nestle into it just right: close enough to grip, oriented so its charged and greasy patches line up with the pocket's, and bent into a shape the pocket will accept.
Molecular docking is the computer's attempt to predict that fit before anyone synthesizes the molecule. Given a protein and a candidate drug, docking searches for the pose — the position, rotation and internal twist of the ligand — that binds most tightly, and reports a binding score estimating how good the fit is.
It sounds like geometry, and it is. But the number of poses to consider is astronomical, and that is where the trouble starts.
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