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EU-OPENSCREEN: A novel collaborative approach to facilitate chemical biology

Permanent lenke
https://hdl.handle.net/10037/16304
DOI
https://doi.org/10.1177/2472555218816276
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article.pdf (2.079Mb)
Publisher`s version (PDF)
Dato
2019-01-07
Type
Journal article
Tidsskriftartikkel
Peer reviewed

Forfatter
Brennecke, Philip; Rasina, Dace; Aubi Catevilla, Oscar; Herzog, Katja; Landskron, Johannes; Cautain, Bastien; Vicente, Francisca; Quintana, Jordi; Mestres, Jordi; Stechmann, Bahne; Ellinger, Bernhard; Brea, Jose; Kolanowski, Jacek L.; Pilarski, Radosław; Orzáez, Mar; Pineda-Lucena, Antonio; Laraia, Luca; Nami, Faranak; Zielenkiewicz, Piotr; Paruch, Kamil; Hansen, Espen; von Kries, Jens P.; Neuenschwander, Martin; Specker, Edgar; Bartunek, Petr; Šímová, Šárka; Leśnikowski, Zbigniew; Krauss, Stefan; Lehtiö, Lari; Bilitewski, Ursula; Brönstrup, Mark; Tasken, Kjetil; Jirgensons, Aigars; Lickert, Heiko; Clausen, Mads H.; Andersen, Jeanette hammer; Vicent, Maria J.; Genilloud, Olga; Martinez, Aurora; Nazaré, Marc; Fecke, Wolfgang; Gribbon, Philip
Sammendrag
Compound screening in biological assays and subsequent optimization of hits is indispensable for the development of new molecular research tools and drug candidates. To facilitate such discoveries, the European Research Infrastructure EU-OPENSCREEN was founded recently with the support of its member countries and the European Commission. Its distributed character harnesses complementary knowledge, expertise, and instrumentation in the discipline of chemical biology from 20 European partners, and its open working model ensures that academia and industry can readily access EU-OPENSCREEN’s compound collection, equipment, and generated data. To demonstrate the power of this collaborative approach, this perspective article highlights recent projects from EU-OPENSCREEN partner institutions. These studies yielded (1) 2-aminoquinazolin-4(3H)-ones as potential lead structures for new antimalarial drugs, (2) a novel lipodepsipeptide specifically inducing apoptosis in cells deficient for the pVHL tumor suppressor, (3) small-molecule-based ROCK inhibitors that induce definitive endoderm formation and can potentially be used for regenerative medicine, (4) potential pharmacological chaperones for inborn errors of metabolism and a familiar form of acute myeloid leukemia (AML), and (5) novel tankyrase inhibitors that entered a lead-to-candidate program. Collectively, these findings highlight the benefits of small-molecule screening, the plethora of assay designs, and the close connection between screening and medicinal chemistry within EU-OPENSCREEN.
Beskrivelse
Source at https://doi.org/10.1177/2472555218816276.
Forlag
SAGE Publications
Sitering
Brennecke, P., Rasina, D., Aubi, O., Herzog, K., Landskron, J., Cautain, B. ... Gribbon, P. (2019). EU-OPENSCREEN: A novel collaborative approach to facilitate chemical biology. SLAS Discovery, 24(3), 398-413. https://doi.org/10.1177/2472555218816276
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