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A Single-Stranded DNA-Encoded Chemical Library Based on a Stereoisomeric Scaffold Enables Ligand Discovery by Modular Assembly of Building Blocks.


ABSTRACT: A versatile and Lipinski-compliant DNA-encoded library (DEL), comprising 366 600 glutamic acid derivatives coupled to oligonucleotides serving as amplifiable identification barcodes is designed, constructed, and characterized. The GB-DEL library, constructed in single-stranded DNA format, allows de novo identification of specific binders against several pharmaceutically relevant proteins. Moreover, hybridization of the single-stranded DEL with a set of known protein ligands of low to medium affinity coupled to a complementary DNA strand results in self-assembled selectable chemical structures, leading to the identification of affinity-matured compounds.

SUBMITTER: Bassi G 

PROVIDER: S-EPMC7675038 | biostudies-literature | 2020 Nov

REPOSITORIES: biostudies-literature

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A Single-Stranded DNA-Encoded Chemical Library Based on a Stereoisomeric Scaffold Enables Ligand Discovery by Modular Assembly of Building Blocks.

Bassi Gabriele G   Favalli Nicholas N   Vuk Miriam M   Catalano Marco M   Martinelli Adriano A   Trenner Anika A   Porro Antonio A   Yang Su S   Tham Chuin Lean CL   Moroglu Mustafa M   Yue Wyatt W WW   Conway Stuart J SJ   Vogt Peter K PK   Sartori Alessandro A AA   Scheuermann Jörg J   Neri Dario D  

Advanced science (Weinheim, Baden-Wurttemberg, Germany) 20201014 22


A versatile and Lipinski-compliant DNA-encoded library (DEL), comprising 366 600 glutamic acid derivatives coupled to oligonucleotides serving as amplifiable identification barcodes is designed, constructed, and characterized. The GB-DEL library, constructed in single-stranded DNA format, allows de novo identification of specific binders against several pharmaceutically relevant proteins. Moreover, hybridization of the single-stranded DEL with a set of known protein ligands of low to medium affi  ...[more]

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