Comparison of AaL active site with AiiA, AiiB, and AidC. (A)

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Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
PDF) The exceptionally efficient quorum quenching enzyme LrsL suppresses Pseudomonas aeruginosa biofilm production
Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
Structure-guided phylogenetic reconstruction of the superfamily of proteins sharing the metallo-β-lactamase fold
Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
Quorum quenching activity of AiiA lactonase KMMI17 from endophytic Bacillus thuringiensis KMCL07 on AHL- mediated pathogenic phenotype in Pseudomonas aeruginosa - ScienceDirect
Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
Structural and Biochemical Characterization of AidC, a Quorum-Quenching Lactonase with Atypical Selectivity. - Abstract - Europe PMC
Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
Comparison of amino acid sequences of AidC and five known AiiA-type
Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
Cloning and characterization of Aiia, an acylhomoserine lactonase from Bacillus cereus RC1 to control soft rot causing pathogen Lelliottia amnigena RCE
Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
Quorum‐quenching enzymes: Promising bioresources and their opportunities and challenges as alternative bacteriostatic agents in food industry - Wang - 2023 - Comprehensive Reviews in Food Science and Food Safety - Wiley Online Library
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