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136 related items for PubMed ID: 33015962

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  • 3. The Gac/Rsm and cyclic-di-GMP signalling networks coordinately regulate iron uptake in Pseudomonas aeruginosa.
    Frangipani E, Visaggio D, Heeb S, Kaever V, Cámara M, Visca P, Imperi F.
    Environ Microbiol; 2014 Mar; 16(3):676-88. PubMed ID: 23796404
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  • 4. Regulation of the Pseudomonas aeruginosa toxA, regA and ptxR genes by the iron-starvation sigma factor PvdS under reduced levels of oxygen.
    Gaines JM, Carty NL, Tiburzi F, Davinic M, Visca P, Colmer-Hamood JA, Hamood AN.
    Microbiology (Reading); 2007 Dec; 153(Pt 12):4219-4233. PubMed ID: 18048935
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  • 5. Post-secretional activation of Protease IV by quorum sensing in Pseudomonas aeruginosa.
    Oh J, Li XH, Kim SK, Lee JH.
    Sci Rep; 2017 Jun 30; 7(1):4416. PubMed ID: 28667333
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  • 11. GeneChip expression analysis of the iron starvation response in Pseudomonas aeruginosa: identification of novel pyoverdine biosynthesis genes.
    Ochsner UA, Wilderman PJ, Vasil AI, Vasil ML.
    Mol Microbiol; 2002 Sep 30; 45(5):1277-87. PubMed ID: 12207696
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  • 13. Integrated activities of two alternative sigma factors coordinate iron acquisition and uptake by Pseudomonas aeruginosa.
    Edgar RJ, Hampton GE, Garcia GPC, Maher MJ, Perugini MA, Ackerley DF, Lamont IL.
    Mol Microbiol; 2017 Dec 30; 106(6):891-904. PubMed ID: 28971540
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  • 14. RsmA3 modulates RpoS through the RetS-Gac-Rsm signalling pathway in response to H2 O2 stress in the phytopathogen Pseudomonas syringae.
    Yu X, Meng C, Tan X, Su Y, Cao Z, Hwang TS, Li L.
    Environ Microbiol; 2022 Oct 30; 24(10):4755-4770. PubMed ID: 35837862
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