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GENERA: A Combined Genetic/Deep-Learning Algorithm for Multiobjective Target-Oriented De Novo Design

G. Lamanna, Pietro Delre, Gilles Marcou, Michele Saviano, Alexandre Varnek, Dragos Horvath, Giuseppe Felice Mangiatordi

2023Journal of Chemical Information and Modeling31 citationsDOIOpen Access PDF

Abstract

High Resolution Image Download MS PowerPoint Slide This study introduces a new de novo design algorithm called GENERA that combines the capabilities of a deep-learning algorithm for automated drug-like analogue design, called DeLA-Drug, with a genetic algorithm for generating molecules with desired target-oriented properties. Specifically, GENERA was applied to the angiotensin-converting enzyme 2 (ACE2) target, which is implicated in many pathological conditions, including COVID-19. The ability of GENERA to de novo design promising candidates for a specific target was assessed using two docking programs, PLANTS and GLIDE. A fitness function based on the Pareto dominance resulting from computed PLANTS and GLIDE scores was applied to demonstrate the algorithm’s ability to perform multiobjective optimizations effectively. GENERA can quickly generate focused libraries that produce better scores compared to a starting set of known ACE-2 binders. This study is the first to utilize a DL-based algorithm designed for analogue generation as a mutational operator within a GA framework, representing an innovative approach to target-oriented de novo design.

Topics & Concepts

Computer scienceFitness functionAlgorithmSynthetic biologyPareto principleEvolutionary algorithmArtificial intelligenceGenetic algorithmDeep learningMachine learningComputational biologyBiologyMathematical optimizationMathematicsComputational Drug Discovery MethodsViral Infectious Diseases and Gene Expression in InsectsMachine Learning in Materials Science
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