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Dichloro Butenediamides as Irreversible Site-Selective Protein Conjugation Reagent.
Laserna, Victor; Abegg, Daniel; Afonso, Cláudia F; Martin, Esther M; Adibekian, Alexander; Ravn, Peter; Corzana, Francisco; Bernardes, Gonçalo J L.
Affiliation
  • Laserna V; Yusuf Hamied Department of Chemistry, University of Cambridge, Lensfield Road, CB2 1EW, Cambridge, UK.
  • Abegg D; Department of Chemistry, The Scripps Research Institute, 130 Scripps Way, Jupiter, Fl, 33458, USA.
  • Afonso CF; Instituto de Medicina Molecular João Lobo Antunes, Faculdade de Medicina Universidade de Lisboa, Avenida Professor Egas Moniz, 1649-028, Lisboa, Portugal.
  • Martin EM; AstraZeneca, R&D BioPharmaceuticals Unit|Antibody Discovery & Protein Engineering (ADPE), Milstein Building, Granta Park, Cambridge, CB21 6GH, UK.
  • Adibekian A; Department of Chemistry, The Scripps Research Institute, 130 Scripps Way, Jupiter, Fl, 33458, USA.
  • Ravn P; AstraZeneca, R&D BioPharmaceuticals Unit|Antibody Discovery & Protein Engineering (ADPE), Milstein Building, Granta Park, Cambridge, CB21 6GH, UK.
  • Corzana F; Department of Biotherapeutic Discovery, H. Lundbeck A/S, Ottiliavej 9, 2500, Valby, Denmark.
  • Bernardes GJL; Departamento de Química, Centro de Investigación en Síntesis Química, Universidad de La Rioja, 26006, Logroño, Spain.
Angew Chem Int Ed Engl ; 60(44): 23750-23755, 2021 10 25.
Article in En | MEDLINE | ID: mdl-34472678
We describe maleic-acid derivatives as robust cysteine-selective reagents for protein labelling with comparable kinetics and superior stability relative to maleimides. Diamide and amido-ester derivatives proved to be efficient protein-labelling species with a common mechanism in which a spontaneous cyclization occurs upon addition to cysteine. Introduction of chlorine atoms in their structures triggers ring hydrolysis or further conjugation with adjacent residues, which results in conjugates that are completely resistant to retro-Michael reactions in the presence of biological thiols and human plasma. By controlling the microenvironment of the reactive site, we can control selectivity towards the hydrolytic pathway, forming homogeneous conjugates. The method is applicable to several scaffolds and enables conjugation of different payloads. The synthetic accessibility of these reagents and the mild conditions required for fast and complete conjugation together with the superior stability of the conjugates make this strategy an important alternative to maleimides in bioconjugation.
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Full text: 1 Database: MEDLINE Main subject: Proteins / Diamide Limits: Humans Language: En Year: 2021 Type: Article

Full text: 1 Database: MEDLINE Main subject: Proteins / Diamide Limits: Humans Language: En Year: 2021 Type: Article