Publikation: Assembly of branched ubiquitin oligomers by click chemistry
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Chemical communications. 2019, 55(87), pp. 13093-13095. ISSN 1359-7345. eISSN 1364-548X. Available under: doi: 10.1039/c9cc07303e
Zusammenfassung
Ubiquitin monomers functionalized with an azide or multiple alkynes were utilized for the assembly of branched ubiquitin oligomers (K6/K11, K11/K48, K11/K63, K6/K11/K48) by click chemistry. The oligomers resist deubiquitylase-catalysed hydrolysis and exhibit stability in eukaryotic cell lysates.
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570 Biowissenschaften, Biologie
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ZHAO, Xiaohui, Martin SCHEFFNER, Andreas MARX, 2019. Assembly of branched ubiquitin oligomers by click chemistry. In: Chemical communications. 2019, 55(87), pp. 13093-13095. ISSN 1359-7345. eISSN 1364-548X. Available under: doi: 10.1039/c9cc07303eBibTex
@article{Zhao2019-10-29Assem-47274,
year={2019},
doi={10.1039/c9cc07303e},
title={Assembly of branched ubiquitin oligomers by click chemistry},
number={87},
volume={55},
issn={1359-7345},
journal={Chemical communications},
pages={13093--13095},
author={Zhao, Xiaohui and Scheffner, Martin and Marx, Andreas}
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<dcterms:abstract xml:lang="eng">Ubiquitin monomers functionalized with an azide or multiple alkynes were utilized for the assembly of branched ubiquitin oligomers (K6/K11, K11/K48, K11/K63, K6/K11/K48) by click chemistry. The oligomers resist deubiquitylase-catalysed hydrolysis and exhibit stability in eukaryotic cell lysates.</dcterms:abstract>
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