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Babur, Ozgun; Luna, Augustin; Korkut, Anil; Durupinar, Funda; Siper, Metin Can; Dogrusoz, Ugur; Jacome, Alvaro Sebastian Vaca; Peckner, Ryan; Christianson, Karen E.; Jaffe, Jacob D.; Spellman, Paul T.; Aslan, Joseph E.; Sander, Chris; Demir, Emek
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The method mimics a biologist's traditional approach of explaining changes in data using prior knowledge but does this at the scale of hundreds of thousands of reactions. This is a specific example of how to automate scientific reasoning processes and illustrates the power ofmapping from experimental data to prior knowledge via logic programming. The identified mechanisms can explain how experimental and physiological perturbations, propagating in a network of reactions, affect cellular responses and their phenotypic consequences. 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