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Engineering dynamic gates in binding pocket of penicillin G acylase to selectively degrade bacterial signaling molecules

2023-05-09

Abstract excerpt

The rapid rise of antibiotic-resistant bacteria necessitates the search for alternative, unconventional solutions, such as targeting bacterial communication. Signal disruption can be achieved by enzymatic degradation of signaling compounds, reducing the expression of genes responsible for virulence, biofilm formation, and drug resistance while evading common resistance mechanisms. Therefore, enzymes with such acti...

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Literature Corpus work
e3e1751a-bcfe-56f6-ad8e-917f64af5e1d
DOI
10.1101/2023.05.09.538545
Open publication

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Engineering dynamic gates in binding pocket of penicillin G acylase to selectively degrade bacterial signaling moleculesDOI 10.1101/2023.05.09.538545
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