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DOI: 10.1021/jacs.6b01023
¤ OpenAccess: Green
This work has “Green” OA status. This means it may cost money to access on the publisher landing page, but there is a free copy in an OA repository.

<i>In Vivo</i> Biosynthesis of a β-Amino Acid-Containing Protein

Clarissa Melo Czekster,Wesley E. Robertson,Allison S. Walker,Dieter Söll,Alanna Schepartz

Ribosome
Escherichia coli
Amino acid
2016
It has recently been reported that ribosomes from erythromycin-resistant Escherichia coli strains, when isolated in S30 extracts and incubated with chemically mis-acylated tRNA, can incorporate certain β-amino acids into full length DHFR in vitro. Here we report that wild-type E. coli EF-Tu and phenylalanyl-tRNA synthetase collaborate with these mutant ribosomes and others to incorporate β(3)-Phe analogs into full length DHFR in vivo. E. coli harboring the most active mutant ribosomes are robust, with a doubling time only 14% longer than wild-type. These results reveal the unexpected tolerance of E. coli and its translation machinery to the β(3)-amino acid backbone and should embolden in vivo selections for orthogonal translational machinery components that incorporate diverse β-amino acids into proteins and peptides. E. coli harboring mutant ribosomes may possess the capacity to incorporate many non-natural, non-α-amino acids into proteins and other sequence-programmed polymeric materials.
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    <i>In Vivo</i> Biosynthesis of a β-Amino Acid-Containing Protein” is a paper by Clarissa Melo Czekster Wesley E. Robertson Allison S. Walker Dieter Söll Alanna Schepartz published in 2016. It has an Open Access status of “green”. You can read and download a PDF Full Text of this paper here.