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Diagonal Method to Measure Synergy Among Any Number of Drugs
Published on: June 21, 2018
A pleiotropic-epistatic entangelement model of drug response
Yu Wang1, Mengmeng Sang2, Li Feng3
1Center for Computational Biology, Beijing Forestry University, Beijing 100083, China.
Abstract:
Because drug response is multifactorial, graph models are uniquely powerful for comprehending its genetic architecture. We deconstruct drug response into many different and interdependent sub-traits, with each sub-trait controlled by multiple genes that act and interact in a complicated manner. The outcome of drug response is the consequence of multileveled intertwined interactions between pleiotropic effects and epistatic effects. Here, we propose a general statistical physics framework to chart the 3D geometric network that codes how epistasis pleiotropically influences a complete set of sub-traits to shape body-drug interactions. This model can dissect the topological architecture of epistatically induced pleiotropic networks (EiPN) and pleiotropically influenced epistatic networks (PiEN). We analyze and interpret the practical implications of the pleiotropic-epistatic entanglement model for pharmacogenomic studies.
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