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Updated: Apr 3, 2026

Imaging Integrin Tension and Cellular Force at Submicron Resolution with an Integrative Tension Sensor
Published on: April 25, 2019
Oxidative Deselenization of Selenocysteine: Applications for Programmed Ligation at Serine
Lara R Malins1, Nicholas J Mitchell1, Sheena McGowan2
1School of Chemistry, The University of Sydney, NSW 2006 (Australia) http://sydney.edu.au/science/chemistry/∼payne/index.html.
Abstract:
Despite the unique chemical properties of selenocysteine (Sec), ligation at Sec is an under-utilized methodology for protein synthesis. We describe herein an unprecedented protocol for the conversion of Sec to serine (Ser) in a single, high-yielding step. When coupled with ligation at Sec, this transformation provides a new approach to programmed ligations at Ser residues. This new reaction is compatible with a wide range of functionality, including the presence of unprotected amino acid side chains and appended glycans. The utility of the methodology is demonstrated in the rapid synthesis of complex glycopeptide fragments of the epithelial glycoproteins MUC5AC and MUC4 and through the total synthesis of the structured, cysteine (Cys)-free protein eglin C.
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