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Cell-free protein synthesis from a release factor 1 deficient Escherichia coli activates efficient and multiple site-specific nonstandard amino acid incorporation.

ACS Synth Biol. 2014; 
HongSeok Hoon,NtaiIoanna,HaimovichAdrian D,KelleherNeil L,IsaacsFarren J,JewettMicha
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Codon Optimization In order to introduce two TAGs in sfGFP, an amber codon was added at the codon corresponding to N212 on pY71-sfGFP-T216amb, resulting in pY71-sfGFP-2amb. sfGFP with five amber sites (corresponding to positions D36, K101, E132, D190, and E213) or ten amber sites (corresponding to positions D36, K101, D102, E132, D133, K140, D190, V193, E213, and D218) was synthesized through GenScript (Piscataway, NJ) and cloned into pY71 vector using NdeI and SalI restriction sites to construct pY71-sfGFP-5amb and pY71-sfGFP-10amb. Get A Quote

摘要

Site-specific incorporation of nonstandard amino acids (NSAAs) into proteins enables the creation of biopolymers, proteins, and enzymes with new chemical properties, new structures, and new functions. To achieve this, amber (TAG codon) suppression has been widely applied. However, the suppression efficiency is limited due to the competition with translation termination by release factor 1 (RF1), which leads to truncated products. Recently, we constructed a genomically recoded Escherichia coli strain lacking RF1 where 13 occurrences of the amber stop codon have been reassigned to the synonymous TAA codon (rEc.E13.ΔprfA). Here, we assessed and characterized cell-free protein synthesis (CFPS) in... More

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