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A Tag-Free Platform for Synthesis and Screening of Cyclic Peptide Libraries.
Bruce, Angele; Adebomi, Victor; Czabala, Patrick; Palmer, Jonathan; McFadden, William M; Lorson, Zachary C; Slack, Ryan L; Bhardwaj, Gaurav; Sarafianos, Stefan G; Raj, Monika.
Afiliación
  • Bruce A; Department of Chemistry, Emory University, Atlanta, Georgia, 30322, United States.
  • Adebomi V; Department of Chemistry, Emory University, Atlanta, Georgia, 30322, United States.
  • Czabala P; Department of Medicinal Chemistry, University of Washington, Seattle, WA, United States, 98195.
  • Palmer J; Department of Chemistry, Emory University, Atlanta, Georgia, 30322, United States.
  • McFadden WM; Department of Medicinal Chemistry, University of Washington, Seattle, WA, United States, 98195.
  • Lorson ZC; Center for ViroScience and Cure, Laboratory of Biochemical Pharmacology, Department of Pediatrics, Emory University School of Medicine, 1760 Haygood Drive NE, Atlanta, GA, 30322, United States.
  • Slack RL; Children's Healthcare of Atlanta, Atlanta, GA, 30322, United States.
  • Bhardwaj G; Center for ViroScience and Cure, Laboratory of Biochemical Pharmacology, Department of Pediatrics, Emory University School of Medicine, 1760 Haygood Drive NE, Atlanta, GA, 30322, United States.
  • Sarafianos SG; Children's Healthcare of Atlanta, Atlanta, GA, 30322, United States.
  • Raj M; Center for ViroScience and Cure, Laboratory of Biochemical Pharmacology, Department of Pediatrics, Emory University School of Medicine, 1760 Haygood Drive NE, Atlanta, GA, 30322, United States.
Angew Chem Int Ed Engl ; 63(21): e202320045, 2024 05 21.
Article en En | MEDLINE | ID: mdl-38529717
ABSTRACT
In the realm of high-throughput screening (HTS), macrocyclic peptide libraries traditionally necessitate decoding tags, essential for both library synthesis and identifying hit peptide sequences post-screening. Our innovation introduces a tag-free technology platform for synthesizing cyclic peptide libraries in solution and facilitates screening against biological targets to identify peptide binders through unconventional intramolecular CyClick and DeClick chemistries (CCDC) discovered through our research. This combination allows for the synthesis of diverse cyclic peptide libraries, the incorporation of various amino acids, and facile linearization and decoding of cyclic peptide binder sequences. Our sensitivity-enhancing derivatization method, utilized in tandem with nano LC-MS/MS, enables the sequencing of peptides even at exceedingly low picomolar concentrations. Employing our technology platform, we have successfully unearthed novel cyclic peptide binders against a monoclonal antibody and the first cyclic peptide binder of HIV capsid protein responsible for viral infections as validated by microscale thermal shift assays (TSA), biolayer interferometry (BLI) and functional assays.
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Texto completo: 1 Base de datos: MEDLINE Asunto principal: Péptidos Cíclicos / Biblioteca de Péptidos Idioma: En Revista: Angew Chem Int Ed Engl Año: 2024 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Péptidos Cíclicos / Biblioteca de Péptidos Idioma: En Revista: Angew Chem Int Ed Engl Año: 2024 Tipo del documento: Article