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)
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
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)
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)
Marine Drugs, Free Full-Text
Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
The Structural Determinants Accounting for the Broad Substrate Specificity of the Quorum Quenching Lactonase GcL - Bergonzi - 2019 - ChemBioChem - Wiley Online Library
Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
MomL, a Novel Marine-Derived N-Acyl Homoserine Lactonase from Muricauda olearia
Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
WO2020185861A1 - Proteins and methods for disrupting bacterial communication - Google Patents
Comparison of AaL active site with AiiA, AiiB, and AidC. (A)
Marine Drugs, Free Full-Text
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