Publication | Open Access
MAVE-NN: learning genotype-phenotype maps from multiplex assays of variant effect
76
Citations
43
References
2022
Year
GeneticsHuman PolymorphismGenetic AnalysisGenotype-phenotype AssociationBiostatisticsPublic HealthVariant InterpretationSystems BiologyStatistical GeneticsMultiplex AssaysGenetic VariationDeep LearningPopulation GeneticsBioinformaticsFunctional GenomicsImaging GenomicsAllelic VariantComputational BiologyParallel Reporter AssaysRegulatory Network ModellingVariant EffectMedicine
Multiplex assays of variant effect (MAVEs) are a family of methods that includes deep mutational scanning experiments on proteins and massively parallel reporter assays on gene regulatory sequences. Despite their increasing popularity, a general strategy for inferring quantitative models of genotype-phenotype maps from MAVE data is lacking. Here we introduce MAVE-NN, a neural-network-based Python package that implements a broadly applicable information-theoretic framework for learning genotype-phenotype maps-including biophysically interpretable models-from MAVE datasets. We demonstrate MAVE-NN in multiple biological contexts, and highlight the ability of our approach to deconvolve mutational effects from otherwise confounding experimental nonlinearities and noise.
| Year | Citations | |
|---|---|---|
Page 1
Page 1