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Native Chemical Ligation and Extended Methods: Mechanisms, Catalysis, Scope, and Limitations.
Agouridas, Vangelis; El Mahdi, Ouafâa; Diemer, Vincent; Cargoët, Marine; Monbaliu, Jean-Christophe M; Melnyk, Oleg.
Afiliação
  • Agouridas V; UMR CNRS 8204, Centre d'Immunité et d'Infection de Lille , University of Lille, CNRS, Institut Pasteur de Lille , F-59000 Lille , France.
  • El Mahdi O; Faculté Polydisciplinaire de Taza , University Sidi Mohamed Ben Abdellah , BP 1223 Taza Gare , Morocco.
  • Diemer V; UMR CNRS 8204, Centre d'Immunité et d'Infection de Lille , University of Lille, CNRS, Institut Pasteur de Lille , F-59000 Lille , France.
  • Cargoët M; UMR CNRS 8204, Centre d'Immunité et d'Infection de Lille , University of Lille, CNRS, Institut Pasteur de Lille , F-59000 Lille , France.
  • Monbaliu JM; Center for Integrated Technology and Organic Synthesis, Department of Chemistry , University of Liège , Building B6a, Room 3/16a, Sart-Tilman , B-4000 Liège , Belgium.
  • Melnyk O; UMR CNRS 8204, Centre d'Immunité et d'Infection de Lille , University of Lille, CNRS, Institut Pasteur de Lille , F-59000 Lille , France.
Chem Rev ; 119(12): 7328-7443, 2019 06 26.
Article em En | MEDLINE | ID: mdl-31050890
ABSTRACT
The native chemical ligation reaction (NCL) involves reacting a C-terminal peptide thioester with an N-terminal cysteinyl peptide to produce a native peptide bond between the two fragments. This reaction has considerably extended the size of polypeptides and proteins that can be produced by total synthesis and has also numerous applications in bioconjugation, polymer synthesis, material science, and micro- and nanotechnology research. The aim of the present review is to provide a thorough mechanistic overview of NCL and extended methods. The most relevant properties of peptide thioesters, Cys peptides, and common solvents, reagents, additives, and catalysts used for these ligations are presented. Mechanisms, selectivity and reactivity are, whenever possible, discussed through the insights of computational and physical chemistry studies. The inherent limitations of NCL are discussed with insights from the mechanistic standpoint. This review also presents a palette of O, S-, N, S-, or N, Se-acyl shift systems as thioester or selenoester surrogates and discusses the special molecular features that govern reactivity in each case. Finally, the various thiol-based auxiliaries and thiol or selenol amino acid surrogates that have been developed so far are discussed with a special focus on the mechanism of long-range N, S-acyl migrations and selective dechalcogenation reactions.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article