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Engineered, highly reactive substrates of microbial transglutaminase enable protein labeling within various secondary structure elements.


ABSTRACT: Microbial transglutaminase (MTG) is a practical tool to enzymatically form isopeptide bonds between peptide or protein substrates. This natural approach to crosslinking the side-chains of reactive glutamine and lysine residues is solidly rooted in food and textile processing. More recently, MTG's tolerance for various primary amines in lieu of lysine have revealed its potential for site-specific protein labeling with aminated compounds, including fluorophores. Importantly, MTG can label glutamines at accessible positions in the body of a target protein, setting it apart from most labeling enzymes that react exclusively at protein termini. To expand its applicability as a labeling tool, we engineered the B1 domain of Protein G (GB1) to probe the selectivity and enhance the reactivity of MTG

SUBMITTER: Rachel NM 

PROVIDER: S-EPMC5654746 | biostudies-literature | 2017 Nov

REPOSITORIES: biostudies-literature

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