Open Innovation for Phenotypic Drug Discovery: The PD2 Assay Panel

Author:

Lee Jonathan A.1,Chu Shaoyou2,Willard Francis S.2,Cox Karen L.2,Sells Galvin Rachelle J.2,Peery Robert B.2,Oliver Sarah E.2,Oler Jennifer2,Meredith Tamika D.2,Heidler Steven A.2,Gough Wendy H.2,Husain Saba2,Palkowitz Alan D.3,Moxham Christopher M.2

Affiliation:

1. Department of Quantitative and Structural Biology, Lilly Research Laboratories, Eli Lilly and Company, Indianapolis, Indiana  jonathan_a_lee@lilly.com

2. Department of Quantitative and Structural Biology, Lilly Research Laboratories, Eli Lilly and Company, Indianapolis, Indiana

3. Discovery Chemistry Research and Technologies, Lilly Research Laboratories, Eli Lilly and Company, Indianapolis, Indiana

Abstract

Phenotypic lead generation strategies seek to identify compounds that modulate complex, physiologically relevant systems, an approach that is complementary to traditional, target-directed strategies. Unlike gene-specific assays, phenotypic assays interrogate multiple molecular targets and signaling pathways in a target “agnostic” fashion, which may reveal novel functions for well-studied proteins and discover new pathways of therapeutic value. Significantly, existing compound libraries may not have sufficient chemical diversity to fully leverage a phenotypic strategy. To address this issue, Eli Lilly and Company launched the Phenotypic Drug Discovery Initiative (PD2), a model of open innovation whereby external research groups can submit compounds for testing in a panel of Lilly phenotypic assays. This communication describes the statistical validation, operations, and initial screening results from the first PD2 assay panel. Analysis of PD2 submissions indicates that chemical diversity from open source collaborations complements internal sources. Screening results for the first 4691 compounds submitted to PD2 have confirmed hit rates from 1.6% to 10%, with the majority of active compounds exhibiting acceptable potency and selectivity. Phenotypic lead generation strategies, in conjunction with novel chemical diversity obtained via open-source initiatives such as PD2, may provide a means to identify compounds that modulate biology by novel mechanisms and expand the innovation potential of drug discovery.

Publisher

Elsevier BV

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