Quorum Sensing

(sharon) #1

  1. Govan JR, Deretic V (1996) Microbial patho-
    genesis in cystic fibrosis: mucoidPseudomonas
    aeruginosaandBurkholderia cepacia. Micro-
    biol Rev 60:539–574

  2. Haussler S, Becker T (2008) ThePseudomonas
    quinolone signal (PQS) balances life and death
    inPseudomonas aeruginosapopulations. PLoS
    Pathog 4(9):e1000166

  3. Daly M, Power E, Bjorkroth J, Sheehan P,
    O’Connell A, Colgan M et al (1999) Molecular
    analysis ofPseudomonas aeruginosa: epidemiolog-
    ical investigation of mastitis outbreaks in Irish
    dairy herds. Appl Env Microbiol 65:2723–2729

  4. Quinn PJ, Markey BK, Leonard F, FitzPatrick
    E, Fanning S (2015) Concise review of veteri-
    nary microbiology, 2nd edn. Wiley, Blackwell

  5. Scaccabarozzi L, Leoni L, Ballarini A, Barberio
    A, Locatelli C, Casula A et al (2015)Pseudomo-
    nas aeruginosain dairy goats: genotypic and
    phenotypic comparison of intramammary and
    environmental isolates. PLoS One 10(11):
    e0142973

  6. Lupp C, Ruby EG (2005)Vibrio fischeriuses
    two quorum-sensing systems for the regulation
    of early and late colonization factors. J Bacter-
    iol 187:3620–3629

  7. Passador L, Cook JM, Gambello MJ, Rust L,
    Iglewski BH (1993) Expression ofPseudomo-
    nas aeruginosavirulence genes requires cell-to-
    cell communication. Science 260:1127–1130

  8. Pesci EC, Milbank JB, Pearson JP, McKnight S,
    Kende AS, Greenberg EP et al (1999) Quino-
    lone signaling in the cell-to-cell communica-
    tion system ofPseudomonas aeruginosa. Proc
    Natl Acad Sci U S A 96:11229–11234

  9. Deziel E, Lepine F, Milot S, He J, Mindrinos
    MN, Tompkins RG et al (2004) Analysis of
    Pseudomonas aeruginosa4-hydroxy-2-alkylqui-
    nolines (HAQs) reveals a role for 4-hydroxy-2-
    heptylquinoline in cell-to-cell communication.
    Proc Natl Acad Sci U S A 101:1339–1344

  10. Zendah I, Shaaban KA, Helmke E, Maier A,
    Fiebig HH, Laatsch H (2012) Barakacin: a
    thiazolyl-indole alkaloid isolated from a rum-
    inal Pseudomonas sp. Z Naturforsch B
    67:417–420

  11. Deschaght P, Van Daele S, De Baets F, Vanee-
    choutte M (2011) PCR and the detection of
    Pseudomonas aeruginosain respiratory samples
    of CF patients. a literature review. J Cyst Fibros
    10:293–297

  12. Buzid A, Shang F, Reen FJ, Muimhneachain
    EO, Clarke SL, Zhou L et al (2016) Molecular
    signature of Pseudomonas aeruginosa with
    simultaneous nanomolar detection of quorum
    sensing signaling molecules at a boron-doped
    diamond electrode. Sci Rep-Uk 6:30001

  13. Buzid A, Reen FJ, Langsi VK, O ́ Muimhnea-
    chain E, O’Gara F, Luong JHT et al (2017)
    Direct and rapid electrochemical detection of
    Pseudomonas aeruginosaquorum sensing sig-
    naling molecules in bacterial cultures and cystic
    fibrosis sputum samples through cationic
    surfactant-assisted membrane disruption.
    ChemElectroChem 4:533–541

  14. Buzid A, O ́Muimhneachain E, Reen FJ, Hayes
    PE, Pardo LM, Shang F et al (2016) Synthesis
    and electrochemical detection of a thiazolyl-
    indole natural product isolated from the noso-
    comial pathogen Pseudomonas aeruginosa.
    Anal Bioanal Chem 408:6361–6367

  15. Fletcher MP, Diggle SP, Ca ́mara M, Williams P
    (2007) Biosensor-based assays for PQS, HHQ
    and related 2-alkyl-4-quinolone quorum
    sensing signal molecules. Nat Protoc
    2:1254–1262

  16. Diggle SP, Matthijs S, Wright VJ, Fletcher MP,
    Chhabra SR, Lamont IL et al (2007) ThePseu-
    domonas aeruginosa4-quinolone signal mole-
    cules HHQ and PQS play multifunctional roles
    in quorum sensing and iron entrapment. Chem
    Biol 14:87–96


116 Alyah Buzid et al.

Free download pdf