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Volumn 354, Issue 6312, 2016, Pages 623-626
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A chemical biology route to site-specific authentic protein modifications
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Author keywords
[No Author keywords available]
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Indexed keywords
COPPER;
DEHYDROALANINE;
GREEN FLUORESCENT PROTEIN;
HISTONE H3;
IODIDE;
MESSENGER RNA;
PHOSPHOAMINO ACID;
PHOSPHOSERINE;
POST-TRANSLATIONALLY MODIFIED PROTEIN;
RECOMBINANT PROTEIN;
UBIQUITIN;
ZINC;
ALANINE;
HISTONE;
XENOPUS PROTEIN;
CARBON;
CHEMICAL BONDING;
COPPER;
METHYLATION;
PROTEIN;
ZINC;
ARTICLE;
CHEMICAL BOND;
CHEMICAL REACTION;
CONJUGATE;
ESCHERICHIA COLI;
FORMYLATION;
HISTONE ACETYLATION;
HISTONE METHYLATION;
NONHUMAN;
PRIORITY JOURNAL;
PROTEIN ACETYLATION;
PROTEIN DEPHOSPHORYLATION;
PROTEIN PROCESSING;
XENOPUS LAEVIS;
ACETYLATION;
ANALOGS AND DERIVATIVES;
ANIMAL;
BIOSYNTHESIS;
CHEMISTRY;
METHYLATION;
PROCEDURES;
PROTEIN ENGINEERING;
PROTEIN SYNTHESIS;
ACETYLATION;
ALANINE;
ANIMALS;
COPPER;
GREEN FLUORESCENT PROTEINS;
HISTONES;
IODIDES;
METHYLATION;
PHOSPHOSERINE;
PROTEIN BIOSYNTHESIS;
PROTEIN ENGINEERING;
PROTEIN PROCESSING, POST-TRANSLATIONAL;
RECOMBINANT PROTEINS;
UBIQUITIN;
XENOPUS LAEVIS;
XENOPUS PROTEINS;
ZINC;
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EID: 84990855446
PISSN: 00368075
EISSN: 10959203
Source Type: Journal
DOI: 10.1126/science.aah4428 Document Type: Article |
Times cited : (177)
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References (25)
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