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1.
Org Biomol Chem ; 15(2): 316-319, 2017 Jan 04.
Artículo en Inglés | MEDLINE | ID: mdl-27910979

RESUMEN

We herein introduce a straightforward synthetic route to cysteine-containing cyclic peptides based on the intramolecular native chemical ligation of in situ generated thioesters. Key precursors are N-Hnb-Cys crypto-thioesters, easily synthesized by Fmoc-based SPPS. The strategy is applied to a representative range of naturally occurring cyclic disulfide-rich peptide sequences.


Asunto(s)
Cisteína/química , Ésteres/química , Péptidos Cíclicos/síntesis química , Compuestos de Sulfhidrilo/química , Conformación Molecular , Péptidos Cíclicos/química
2.
Org Lett ; 18(5): 920-3, 2016 Mar 04.
Artículo en Inglés | MEDLINE | ID: mdl-26878883

RESUMEN

The Fmoc-based solid phase synthesis of C-terminal cysteine-containing peptides is problematic, due to side reactions provoked by the pronounced acidity of the Cα proton of cysteine esters. We herein describe a general strategy consisting of the postsynthetic introduction of the C-terminal Cys through a key chemoselective native chemical ligation reaction with N-Hnb-Cys peptide crypto-thioesters. This method was successfully applied to the demanding peptide sequences of two natural products of biological interest, giving remarkably high overall yields compared to that of a state of the art strategy.


Asunto(s)
Cisteína/síntesis química , Péptidos/síntesis química , Cisteína/química , Ligadura , Estructura Molecular , Péptidos/química
3.
Chem Sci ; 7(1): 339-345, 2016 Jan 01.
Artículo en Inglés | MEDLINE | ID: mdl-29861986

RESUMEN

Despite recent advances, the direct Fmoc-based solid phase synthesis of peptide α-thioesters for the convergent synthesis of proteins via native chemical ligation (NCL) remains a challenge in the field. We herein report a simple and general methodology, enabling access to peptide thioester surrogates. A novel C-terminal N-(2-hydroxybenzyl)cysteine thioesterification device based on an amide-to-thioester rearrangement was developed, and the resulting peptide crypto-thioesters can be directly used in NCL reactions with fast N → S shift kinetics at neutral pH. These fast kinetics arise from our bio-inspired design, via intein-like intramolecular catalysis. Due to a well-positioned phenol moiety, an impressive >50 fold increase in the kinetic rate is observed compared to an O-methylated derivative. Importantly, the synthesis of this new device can be fully automated using inexpensive commercially available materials and does not require any post-synthetic steps prior to NCL. We successfully applied this new method to the synthesis of two long naturally-occurring cysteine-rich peptide sequences.

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