[en] The quorum-sensing regulator PlcR is the master regulator of most known virulence factors in Bacillus cereus. It is a helix-turn-helix (HTH)-type transcription factor activated upon binding of its cognate signaling peptide PapR on a tetratricopeptide repeat-type regulatory domain. The structural and functional properties of PlcR have defined a new family of sensor regulators, called the RNPP family (for Rap, NprR, PrgX, and PlcR), in Gram-positive bacteria. To fully understand the activation mechanism of PlcR, we took a closer look at the conformation changes induced upon binding of PapR and of its target DNA, known as PlcR-box. For that purpose we have determined the structures of the apoform of PlcR (Apo PlcR) and of the ternary complex of PlcR with PapR and the PlcR-box from the plcA promoter. Comparison of the apoform of PlcR with the previously published structure of the PlcR-PapR binary complex shows how a small conformational change induced in the C-terminal region of the tetratricopeptide repeat (TPR) domain upon peptide binding propagates via the linker helix to the N-terminal HTH DNA-binding domain. Further comparison with the PlcR-PapR-DNA ternary complex shows how the activation of the PlcR dimer allows the linker helix to undergo a drastic conformational change and subsequent proper positioning of the HTH domains in the major groove of the two half sites of the pseudopalindromic PlcR-box. Together with random mutagenesis experiments and interaction measurements using peptides from distinct pherogroups, this structural analysis allows us to propose a molecular mechanism for this functional switch.
Disciplines :
Microbiology
Author, co-author :
Grenha, Rosa ✱; Laboratoire d'Enzymologie et Biochimie Structurales, Unité Propre de Recherche 3082, Centre National de la Recherche Scientifique, 91198 Gif sur Yvette, France
Slamti, Leyla; Domaine de la Minière, Unité Mixte de Recherche (UMR) 1319, Institut National de la Recherche Agronomique (INRA), 78280 Guyancourt, France
Nicaise, Magali; Institut de Biochimie et Biophysique Moléculaire et Cellulaire (IBBMC), UMR 8619 CNRS, Université Paris-Sud 11, 91405 Orsay, France
Lereclus, Didier; Domaine de la Minière, Unité Mixte de Recherche (UMR) 1319, Institut National de la Recherche Agronomique (INRA), 78280 Guyancourt, France
Nessler, Sylvie ✱; Laboratoire d'Enzymologie et Biochimie Structurales (LEBS), Unité Propre de Recherche 3082, Centre National de la Recherche Scientifique (CNRS), 91198 Gif sur Yvette, France ; Institut de Biochimie et Biophysique Moléculaire et Cellulaire (IBBMC), UMR 8619 CNRS, Université Paris-Sud 11, 91405 Orsay, France
REFES, Yacine Marc ; University of Luxembourg > Faculty of Science, Technology and Medicine (FSTM) > Department of Life Sciences and Medicine (DLSM) > Medical Education
✱ These authors have contributed equally to this work.
External co-authors :
yes
Language :
English
Title :
Structural basis for the activation mechanism of the PlcR virulence regulator by the quorum-sensing signal peptide PapR.
Publication date :
15 January 2013
Journal title :
Proceedings of the National Academy of Sciences of the United States of America
ISSN :
0027-8424
eISSN :
1091-6490
Publisher :
Proceedings of the National Academy of Sciences, United States
Waters CM, Bassler BL (2005) Quorum sensing: Cell-to-cell communication in bacteria. Annu Rev Cell Dev Biol 21:319-346. (Pubitemid 41740638)
Bongiorni C, Ishikawa S, Stephenson S, Ogasawara N, Perego M (2005) Synergistic regulation of competence development in Bacillus subtilis by two Rap-Phr systems. J Bacteriol 187(13):4353-4361. (Pubitemid 40880945)
Dubois T, et al. (2012) Necrotrophism is a quorum-sensing-regulated lifestyle in Bacillus thuringiensis. PLoS Pathog 8(4):e1002629.
Bae T, Clerc-Bardin S, Dunny GM (2000) Analysis of expression of prgX, a key negative regulator of the transfer of the Enterococcus faecalis pheromone-inducible plasmid pCF10. J Mol Biol 297(4):861-875.
Agaisse H, Gominet M, Okstad OA, Kolstø AB, Lereclus D (1999) PlcR is a pleiotropic regulator of extracellular virulence factor gene expression in Bacillus thuringiensis. Mol Microbiol 32(5):1043-1053. (Pubitemid 29255770)
Blatch GL, Lässle M (1999) The tetratricopeptide repeat: A structural motif mediating protein-protein interactions. Bioessays 21(11):932-939. (Pubitemid 29530602)
Wintjens R, Rooman M (1996) Structural classification of HTH DNA-binding domains and protein-DNA interaction modes. J Mol Biol 262(2):294-313. (Pubitemid 26326978)
Declerck N, et al. (2007) Structure of PlcR: Insights into virulence regulation and evolution of quorum sensing in Gram-positive bacteria. Proc Natl Acad Sci USA 104(47):18490-18495. (Pubitemid 350210724)
Lereclus D, Agaisse H, Gominet M, Salamitou S, Sanchis V (1996) Identification of a Bacillus thuringiensis gene that positively regulates transcription of the phos-phatidylinositol-specific phospholipase C gene at the onset of the stationary phase. J Bacteriol 178(10):2749-2756. (Pubitemid 26144030)
Slamti L, Lereclus D (2005) Specificity and polymorphism of the PlcR-PapR quorum-sensing system in the Bacillus cereus group. J Bacteriol 187(3):1182-1187. (Pubitemid 40189788)
Salamitou S, et al. (2000) The plcR regulon is involved in the opportunistic properties of Bacillus thuringiensis and Bacillus cereus in mice and insects. Microbiology 146(Pt 11):2825-2832.
Callegan MC, et al. (2003) Relationship of plcR-regulated factors to Bacillus endophthalmitis virulence. Infect Immun 71(6):3116-3124. (Pubitemid 36637533)
Gohar M, et al. (2008) The PlcR virulence regulon of Bacillus cereus. PLoS ONE 3(7):e2793.
Slamti L, Lereclus D (2002) A cell-cell signaling peptide activates the PlcR virulence regulon in bacteria of the Bacillus cereus group. EMBO J 21(17):4550-4559. (Pubitemid 34984342)
Gominet M, Slamti L, Gilois N, Rose M, Lereclus D (2001) Oligopeptide permease is required for expression of the Bacillus thuringiensis plcR regulon and for virulence. Mol Microbiol 40(4):963-975. (Pubitemid 32523193)
Bouillaut L, et al. (2008) Molecular basis for group-specific activation of the virulence regulator PlcR by PapR heptapeptides. Nucleic Acids Res 36(11):3791-3801. (Pubitemid 351917540)
Shi K, et al. (2005) Structure of peptide sex pheromone receptor PrgX and PrgX/pheromone complexes and regulation of conjugation in Enterococcus faecalis. Proc Natl Acad Sci USA 102(51):18596-18601. (Pubitemid 43011271)
Zhu H, Domingues FS, Sommer I, Lengauer T (2006) NOXclass: Prediction of protein-protein interaction types. BMC Bioinformatics 7:27.
Krissinel E, Henrick K (2007) Inference of macromolecular assemblies from crystalline state. J Mol Biol 372(3):774-797. (Pubitemid 47321791)
Matthews BW (1968) Solvent content of protein crystals. J Mol Biol 33(2):491-497.
Zheng G, Lu XJ, Olson WK (2009) Web 3DNA - A web server for the analysis, reconstruction, and visualization of three-dimensional nucleic-acid structures. Nucleic Acids Res 37(Web Server issue):W240-W246.
Brennan RG, Matthews BW (1989) The helix-turn-helix DNA binding motif. J Biol Chem 264(4):1903-1906. (Pubitemid 19057656)
Kozlowicz BK, et al. (2006) Molecular basis for control of conjugation by bacterial pheromone and inhibitor peptides. Mol Microbiol 62(4):958-969. (Pubitemid 44655311)
Parashar V, Mirouze N, Dubnau DA, Neiditch MB (2011) Structural basis of response regulator dephosphorylation by Rap phosphatases. PLoS Biol 9(2):e1000589.
Baker MD, Neiditch MB (2011) Structural basis of response regulator inhibition by a bacterial anti-activator protein. PLoS Biol 9(12):e1001226.
Diaz AR, et al. (2012) Bacillus subtilis RapA phosphatase domain interaction with its substrate, phosphorylated Spo0F, and its inhibitor, the PhrA peptide. J Bacteriol 194(6):1378-1388.
Fleuchot B, et al. (2011) Rgg proteins associated with internalized small hydrophobic peptides: A new quorum-sensing mechanism in streptococci. Mol Microbiol 80(4):1102-1119.
Fontaine L, et al. (2010) A novel pheromone quorum-sensing system controls the development of natural competence in Streptococcus thermophilus and Streptococcus salivarius. J Bacteriol 192(5):1444-1454.
Perchat S, et al. (2011) A cell-cell communication system regulates protease production during sporulation in bacteria of the Bacillus cereus group. Mol Microbiol 82(3):619-633.
Chang JC, LaSarre B, Jimenez JC, Aggarwal C, Federle MJ (2011) Two group A streptococcal peptide pheromones act through opposing Rgg regulators to control biofilm development. PLoS Pathog 7(8):e1002190.
Zheng F, et al. (2011) Contribution of the Rgg transcription regulator to metabolism and virulence of Streptococcus suis serotype 2. Infect Immun 79(3):1319-1328.
Shelburne SA, 3rd, et al. (2011) An amino-terminal signal peptide of Vfr protein negatively influences RopB-dependent SpeB expression and attenuates virulence in Streptococcus pyogenes. Mol Microbiol 82(6):1481-1495.
Potterton L, et al. (2004) Developments in the CCP4 molecular-graphics project. Acta Crystallogr D Biol Crystallogr 60(Pt 12 Pt 1):2288-2294.