A New Strategy for the Site-Specific Modification of Proteins in Vivo

We recently developed a method for genetically incorporating unnatural amino acids site-specifically into proteins expressed in Escherichia coli in response to the amber nonsense codon. Here we describe the selection of an orthogonal tRNA−TyrRS pair that selectively and efficiently incorporates m-ac...

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Veröffentlicht in:Biochemistry (Easton) 2003-06, Vol.42 (22), p.6735-6746
Hauptverfasser: Zhang, Zhiwen, Smith, Brian A. C, Wang, Lei, Brock, Ansgar, Cho, Charles, Schultz, Peter G
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Sprache:eng
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Zusammenfassung:We recently developed a method for genetically incorporating unnatural amino acids site-specifically into proteins expressed in Escherichia coli in response to the amber nonsense codon. Here we describe the selection of an orthogonal tRNA−TyrRS pair that selectively and efficiently incorporates m-acetyl-l-phenylalanine into proteins in E. coli. We demonstrate that proteins containing m-acetyl-l-phenylalanine or p-acetyl-l-phenylalanine can be selectively labeled with hydrazide derivatives not only in vitro but also in living cells. The labeling reactions are selective and in general proceed with yields of >75%. In specific examples, m-acetyl-l-phenylalanine was substituted for Lys7 of the cytoplasmic protein Z domain, and for Arg200 of the outer membrane protein LamB, and the mutant proteins were selectively labeled with a series of fluorescent dyes. The genetic incorporation of a nonproteinogenic “ketone handle” into proteins provides a powerful tool for the introduction of biophysical probes for the structural and functional analysis of proteins in vitro or in vivo.
ISSN:0006-2960
1520-4995
DOI:10.1021/bi0300231