Literature DB >> 30433771

Enhancing Protein Stability with Genetically Encoded Noncanonical Amino Acids.

Jack C Li1, Tao Liu1, Yan Wang1, Angad P Mehta1, Peter G Schultz1.   

Abstract

The ability to add noncanonical amino acids to the genetic code may allow one to evolve proteins with new or enhanced properties using a larger set of building blocks. To this end, we have been able to select mutant proteins with enhanced thermal properties from a library of E. coli homoserine O-succinyltransferase ( metA) mutants containing randomly incorporated noncanonical amino acids. Here, we show that substitution of Phe 21 with ( p-benzoylphenyl)alanine (pBzF), increases the melting temperature of E. coli metA by 21 °C. This dramatic increase in thermal stability, arising from a single mutation, likely results from a covalent adduct between Cys 90 and the keto group of pBzF that stabilizes the dimeric form of the enzyme. These experiments show that an expanded genetic code can provide unique solutions to the evolution of proteins with enhanced properties.

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Year:  2018        PMID: 30433771      PMCID: PMC6426444          DOI: 10.1021/jacs.8b07157

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  28 in total

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7.  Improved thermostability and acetic acid tolerance of Escherichia coli via directed evolution of homoserine o-succinyltransferase.

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8.  Protein synthesis with conformationally constrained cyclic dipeptides.

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9.  Computational design of noncanonical amino acid-based thioether staples at N/C-terminal domains of multi-modular pullulanase for thermostabilization in enzyme catalysis.

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Review 10.  Protein Macrocyclization for Tertiary Structure Stabilization.

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