4.6 Article

Aii810, a Novel Cold-Adapted N-Acylhomoserine Lactonase Discovered in a Metagenome, Can Strongly Attenuate Pseudomonas aeruginosa Virulence Factors and Biofilm Formation

Journal

FRONTIERS IN MICROBIOLOGY
Volume 8, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fmicb.2017.01950

Keywords

biofilm; N-acylhomoserine lactonase; quorum sensing; Pseudomonas aeruginosa; cold adaptation

Categories

Funding

  1. National Natural Science Foundation of China [31400680]
  2. School Research Fund [2017xkj007]
  3. Anhui Medical University [2013-ZQKY-09]
  4. Anhui Province Biomass Clean Energy Key Laboratory, Science and Technology Plan Project of Guangdong Province [2013B010404044, 2017A010105011]
  5. Education roject of Guangdong Province [2013KJCX0107, 2016KTSCX067]
  6. Guangdong Climbing Plans [pdjh2017b0262]
  7. National Natural Science Foundation of China [31400680]
  8. School Research Fund [2017xkj007]
  9. Anhui Medical University [2013-ZQKY-09]
  10. Anhui Province Biomass Clean Energy Key Laboratory, Science and Technology Plan Project of Guangdong Province [2013B010404044, 2017A010105011]
  11. Education roject of Guangdong Province [2013KJCX0107, 2016KTSCX067]
  12. Guangdong Climbing Plans [pdjh2017b0262]

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The pathogen Pseudomonas aeruginosa uses quorum sensing (QS) to control virulence and biofilm formation. Enzymatic disruption of quorum sensing is a promising anti-infection therapeutic strategy that does not rely on antibiotics. Here, a novel gene (aii810) encoding an N-acylhomoserine lactonase was isolated from the Mao-tofu metagenome for the first time. Aii810 encoded a protein of 269 amino acids and was expressed in Escherichia coli BL21 (DE3) in soluble form. It showed the highest activity at 20 degrees C, and it maintained 76.5% of activity at 0 degrees C and more than 50% activity at 0-40 degrees C. The optimal pH was 8.0. It was stable in both neutral and slightly alkaline conditions and at temperatures below 40 degrees C. The enzyme hydrolyzed several rho-nitrophenyl esters, but its best substrate was rho-nitrophenyl acetate. Its k(cat) and Km values were 347.7 S-1 and 205.1 mu M, respectively. It efficiently degraded N-butyryl-L-homoserine lactone and N-(3-oxododecanoyl)-L-homoserine lactone, exceeding hydrolysis rates of 72.3 and 100%, respectively. Moreover, Aii810 strongly attenuated P. aeruginosa virulence and biofilm formation. This enzyme with high anti-QS activity was the most cold-adapted N-acylhomoserine lactonase reported, which makes it an attractive enzyme for use as a therapeutic agent against P. aeruginosa infection.

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