| Literature DB >> 27223658 |
Eszter Kozma1, Ivana Nikić2, Balázs R Varga1, Iker Valle Aramburu2, Jun Hee Kang2, Oliver T Fackler3, Edward A Lemke4, Péter Kele5.
Abstract
Introduction of bioorthogonal functionalities (e.g., trans-cyclooctene-TCO) into a protein of interest by site-specific genetic encoding of non-canonical amino acids (ncAAs) creates uniquely targetable platforms for fluorescent labeling schemes in combination with tetrazine-functionalized dyes. However, fluorescent labeling of an intracellular protein is usually compromised by high background, arising from the hydrophobicity of ncAAs; this is typically compensated for by hours-long washout to remove excess ncAAs from the cellular interior. To overcome these problems, we designed, synthesized, and tested new, hydrophilic TCO-ncAAs. One derivative, DOTCO-lysine was genetically incorporated into proteins with good yield. The increased hydrophilicity shortened the excess ncAA washout time from hours to minutes, thus permitting rapid labeling and subsequent fluorescence microscopy.Entities:
Keywords: amino acids; click chemistry; fluorescence; hydrophilicity; protein engineering
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Year: 2016 PMID: 27223658 DOI: 10.1002/cbic.201600284
Source DB: PubMed Journal: Chembiochem ISSN: 1439-4227 Impact factor: 3.164