Literature DB >> 23835227

Protein engineering with unnatural amino acids.

William H Zhang1, Gottfried Otting, Colin J Jackson.   

Abstract

Protein engineering has become an extensively used tool in many fields, allowing us to probe protein function, characterize proteins using a range of biophysical techniques, chemically modify proteins and improve protein function for medical and industrial applications. It is now possible to site-specifically incorporate unnatural, or non-canonical, amino acids (uAAs) into proteins, which has had a major impact on protein engineering. In this review, we discuss the recent technical developments in the field and how uAA-protein engineering is becoming an increasingly valuable molecular tool, with the unique chemical functionalities of some uAAs allowing a range of otherwise impossible experiments to be performed. Finally, the impediments that have resulted in a relatively small number of recent studies in which uAA-protein engineering has been used to improve protein function are discussed, alongside some of the recent technical developments that may serve to overcome these obstacles. Crown
Copyright © 2013. Published by Elsevier Ltd. All rights reserved.

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Year:  2013        PMID: 23835227     DOI: 10.1016/j.sbi.2013.06.009

Source DB:  PubMed          Journal:  Curr Opin Struct Biol        ISSN: 0959-440X            Impact factor:   6.809


  18 in total

Review 1.  Genetically modified proteins: functional improvement and chimeragenesis.

Authors:  Larissa Balabanova; Vasily Golotin; Anna Podvolotskaya; Valery Rasskazov
Journal:  Bioengineered       Date:  2015-07-25       Impact factor: 3.269

Review 2.  Therapeutic applications of an expanded genetic code.

Authors:  Sophie B Sun; Peter G Schultz; Chan Hyuk Kim
Journal:  Chembiochem       Date:  2014-07-18       Impact factor: 3.164

3.  Probing the Catalytic Charge-Relay System in Alanine Racemase with Genetically Encoded Histidine Mimetics.

Authors:  Vangmayee Sharma; Yane-Shih Wang; Wenshe R Liu
Journal:  ACS Chem Biol       Date:  2016-11-15       Impact factor: 5.100

4.  A New Method for Determining Structure Ensemble: Application to a RNA Binding Di-Domain Protein.

Authors:  Wei Liu; Jingfeng Zhang; Jing-Song Fan; Giancarlo Tria; Gerhard Grüber; Daiwen Yang
Journal:  Biophys J       Date:  2016-05-10       Impact factor: 4.033

Review 5.  A new view into prokaryotic cell biology from electron cryotomography.

Authors:  Catherine M Oikonomou; Yi-Wei Chang; Grant J Jensen
Journal:  Nat Rev Microbiol       Date:  2016-02-29       Impact factor: 60.633

Review 6.  Regulatory RNAs: charming gene management styles for synthetic biology applications.

Authors:  Jorge Vazquez-Anderson; Lydia M Contreras
Journal:  RNA Biol       Date:  2013-11-18       Impact factor: 4.652

7.  DNA-binding proteins meet their mismatch.

Authors:  Kale Kundert; James S Fraser
Journal:  Nature       Date:  2020-11       Impact factor: 49.962

8.  Paramagnetic relaxation enhancement of membrane proteins by incorporation of the metal-chelating unnatural amino acid 2-amino-3-(8-hydroxyquinolin-3-yl)propanoic acid (HQA).

Authors:  Sang Ho Park; Vivian S Wang; Jasmina Radoicic; Anna A De Angelis; Sabrina Berkamp; Stanley J Opella
Journal:  J Biomol NMR       Date:  2014-11-28       Impact factor: 2.835

9.  In-frame amber stop codon replacement mutagenesis for the directed evolution of proteins containing non-canonical amino acids: identification of residues open to bio-orthogonal modification.

Authors:  James A J Arpino; Amy J Baldwin; Adam R McGarrity; Eric M Tippmann; D Dafydd Jones
Journal:  PLoS One       Date:  2015-05-26       Impact factor: 3.240

10.  Extending enzyme molecular recognition with an expanded amino acid alphabet.

Authors:  Claire L Windle; Katie J Simmons; James R Ault; Chi H Trinh; Adam Nelson; Arwen R Pearson; Alan Berry
Journal:  Proc Natl Acad Sci U S A       Date:  2017-02-14       Impact factor: 11.205

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