Literature DB >> 27198181

The Crystal Structure of Burkholderia cenocepacia DfsA Provides Insights into Substrate Recognition and Quorum Sensing Fatty Acid Biosynthesis.

Francesca Spadaro1, Viola C Scoffone1, Laurent R Chiarelli1, Marco Fumagalli1, Silvia Buroni1, Giovanna Riccardi1, Federico Forneris1.   

Abstract

Burkholderia cenocepacia is a major concern among respiratory tract infections in cystic fibrosis patients. This pathogen is particularly difficult to treat because of its high level of resistance to the clinically relevant antimicrobial agents. In B. cenocepacia, the quorum sensing cell-cell communication system is involved in different processes that are important for bacterial virulence, such as biofilm formation and protease and siderophore production. Targeting the enzymes involved in this process represents a promising therapeutic approach. With the aim of finding effective quorum sensing inhibitors, we have determined the three-dimensional structure of B. cenocepacia diffusible factor synthase A, DfsA. This bifunctional crotonase (dehydratase/thioesterase) produces the characteristic quorum sensing molecule of B. cenocepacia, cis-2-dodecenoic acid or BDSF, starting from 3-hydroxydodecanoyl-acyl carrier protein. Unexpectedly, the crystal structure revealed the presence of a lipid molecule in the catalytic site of the enzyme, which was identified as dodecanoic acid. Our biochemical characterization shows that DfsA is able to use dodecanoyl-acyl carrier protein as a substrate, demonstrating that dodecanoic acid, the product of this reaction, is released very slowly from the DfsA active site, therefore acting as a DfsA inhibitor. This molecule shows an unprecedented conformational arrangement inside the DfsA active site. In contrast with previous hypotheses, our data illustrate how DfsA and closely related homologous enzymes can recognize long hydrophobic substrates without large conformational changes or assistance by additional regulator molecules. The elucidation of the substrate binding mode in DfsA provides the starting point for structure-based drug discovery studies targeting B. cenocepacia quorum sensing-assisted virulence.

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Year:  2016        PMID: 27198181     DOI: 10.1021/acs.biochem.6b00178

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  4 in total

1.  Structural and functional studies on Pseudomonas aeruginosa DspI: implications for its role in DSF biosynthesis.

Authors:  Li Liu; Tao Li; Xing-Jun Cheng; Cui-Ting Peng; Chang-Cheng Li; Li-Hui He; Si-Min Ju; Ning-Yu Wang; Ting-Hong Ye; Mao Lian; Qing-Jie Xiao; Ying-Jie Song; Yi-Bo Zhu; Luo-Ting Yu; Zhen-Ling Wang; Rui Bao
Journal:  Sci Rep       Date:  2018-03-02       Impact factor: 4.379

2.  Structural basis of DSF recognition by its receptor RpfR and its regulatory interaction with the DSF synthase RpfF.

Authors:  Evan J Waldron; Daniel Snyder; Nicolas L Fernandez; Emily Sileo; Daigo Inoyama; Joel S Freundlich; Christopher M Waters; Vaughn S Cooper; Matthew B Neiditch
Journal:  PLoS Biol       Date:  2019-02-04       Impact factor: 9.593

Review 3.  Methodological tools to study species of the genus Burkholderia.

Authors:  Viola Camilla Scoffone; Gabriele Trespidi; Giulia Barbieri; Samuele Irudal; Aygun Israyilova; Silvia Buroni
Journal:  Appl Microbiol Biotechnol       Date:  2021-11-10       Impact factor: 4.813

4.  Investigating the Mechanism of Action of Diketopiperazines Inhibitors of the Burkholderia cenocepacia Quorum Sensing Synthase CepI: A Site-Directed Mutagenesis Study.

Authors:  Silvia Buroni; Viola C Scoffone; Marco Fumagalli; Vadim Makarov; Maddalena Cagnone; Gabriele Trespidi; Edda De Rossi; Federico Forneris; Giovanna Riccardi; Laurent R Chiarelli
Journal:  Front Pharmacol       Date:  2018-07-31       Impact factor: 5.810

  4 in total

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