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Efficient and reliable computation of free energy in protein-ligand binding,protein-protein binding etc.is a grand challenge in computational biology and is of critical importance in drug design and many other molecular recognition problems.The main challenge lies in the calculation of entropic contribution to the interaction systems.Here,we present a new interaction entropy approach which is theoretically rigorous,computationally efficient and numerically reliable for calculating entropic contribution to free energy in protein-ligand binding and other interaction processes.Drastically different from the widely employed but extremely expensive normal mode method for calculating entropy change in protein-ligand binding,the new method calculates the entropic component(interaction entropy or-TΔS)of the binding free energy directly from molecular dynamics simulation without any extra computational cost.This interaction entropy paradigm introduces novel and intuitive conceptual understanding of the entropic effect in protein-ligand binding and other general interaction systems as well as practical method for highly efficient calculation of this effect.