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Photochemically re-bridging disulfide bonds and the discovery of a thiomaleimide mediated photodecarboxylation of C-terminal cysteines†
Daniel A. Richards,Sally A. Fletcher,Muriel Nobles,Hanno Kossen,Lauren Tedaldi,Vijay Chudasama,Andrew Tinker,James R. Baker
Organic & Biomolecular Chemistry Pub Date : 11/25/2015 00:00:00 , DOI:10.1039/C5OB02120K
Abstract

Described in this work is a novel method for photochemically manipulating peptides and proteins via the installation of cysteine-selective photoactive tags. Thiomaleimides, generated simply by the addition of bromomaleimides to reduced disulfide bonds, undergo [2 + 2] photocycloadditions to reconnect the crosslink between the two cysteine residues. This methodology is demonstrated to enable photoactivation of a peptide by macrocyclisation, and reconnection of the heavy and light chains in an antibody fragment to form thiol stable conjugates. Finally we report on an intriguing thiomaleimide mediated photochemical decarboxylation of C-terminal cysteines, discovered during this study.

Graphical abstract: Photochemically re-bridging disulfide bonds and the discovery of a thiomaleimide mediated photodecarboxylation of C-terminal cysteines
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