| Literature DB >> 30645048 |
Philip A Cistrone1, Michael J Bird1, Dillon T Flood1, Anthony P Silvestri1, Jordi C J Hintzen1, Darren A Thompson2, Philip E Dawson1.
Abstract
For over 20 years, native chemical ligation (NCL) has played a pivotal role in enabling total synthesis and semisynthesis of increasingly complex peptide and protein targets. Classical NCL proceeds by chemoselective reaction of two unprotected polypeptide chains in near-neutral-pH, aqueous solution and is made possible by the presence of a thioester moiety on the C-terminus of the N-terminal peptide fragment and a natural cysteine residue on the N-terminus of the C-terminal peptide fragment. The reaction yields an amide bond adjacent to cysteine at the ligation site, furnishing a native protein backbone in a traceless manner. This unit highlights a number of recent and powerful advances in the methodology and outlines their particular uses, facilitating application in the synthesis of challenging protein targets.Entities:
Keywords: chemoselective; native chemical ligation; peptides; proteins
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Year: 2019 PMID: 30645048 PMCID: PMC6384150 DOI: 10.1002/cpch.61
Source DB: PubMed Journal: Curr Protoc Chem Biol ISSN: 2160-4762