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Expressed protein ligation: A general method for protein engineering
Tom W. Muir
, Dolan Sondhi
, Philip A. Cole
Research output
:
Contribution to journal
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Article
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peer-review
1101
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Scopus citations
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Keyphrases
Expressed Protein Ligation
100%
Protein Engineering
100%
Recombinant Protein
66%
C-terminal Src Kinase
66%
Unnatural Amino Acids
33%
C-terminus
33%
Synthetic Peptides
33%
Protein Synthesis
33%
Semi-synthetic
33%
Post-translational Modification
33%
Chemoselectivity
33%
Tyrosine Kinase
33%
Physiologically Relevant
33%
Phosphoryl Transfer
33%
Thioester
33%
Phosphotyrosine
33%
N-terminal Cysteine
33%
Transfer Efficiency
33%
Ligate
33%
Phosphotyrosine Peptides
33%
Tyrosine Kinase C
33%
Src Homology 2
33%
Chemical Ligation
33%
Neuroscience
C-Terminus
100%
Protein Engineering
100%
Peptide
100%
Kinase
66%
Recombinant Protein
66%
Phosphotyrosine
66%
Amino Acid
33%
Cysteine
33%
Posttranslational Modification
33%
Amino Terminal Sequence
33%
Receptor Tyrosine Kinase
33%
Synthetic Peptide
33%
Thioester
33%
Biochemistry, Genetics and Molecular Biology
Protein Engineering
100%
Peptide
100%
C-Terminus
75%
Phosphotransferase
50%
Kinase
50%
Recombinant Protein
50%
Amino Acids
25%
N-Terminus
25%
Posttranslational Modification
25%
Receptor Tyrosine Kinase
25%
Thioester
25%
Protein Kinase C
25%
Cysteine
25%
Chemistry
Protein Kinase C
25%