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PUBMED FOR HANDHELDS

Journal Abstract Search


110 related items for PubMed ID: 20238420

  • 41. Osmotic adaptation in yeast--control of the yeast osmolyte system.
    Hohmann S.
    Int Rev Cytol; 2002; 215():149-87. PubMed ID: 11952227
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  • 48. Automated ensemble modeling with modelMaGe: analyzing feedback mechanisms in the Sho1 branch of the HOG pathway.
    Schaber J, Flöttmann M, Li J, Tiger CF, Hohmann S, Klipp E.
    PLoS One; 2011 Mar 30; 6(3):e14791. PubMed ID: 21483474
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  • 49. Robustness and fragility in the yeast high osmolarity glycerol (HOG) signal-transduction pathway.
    Krantz M, Ahmadpour D, Ottosson LG, Warringer J, Waltermann C, Nordlander B, Klipp E, Blomberg A, Hohmann S, Kitano H.
    Mol Syst Biol; 2009 Mar 30; 5():281. PubMed ID: 19536204
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  • 51. A systems-level analysis of perfect adaptation in yeast osmoregulation.
    Muzzey D, Gómez-Uribe CA, Mettetal JT, van Oudenaarden A.
    Cell; 2009 Jul 10; 138(1):160-71. PubMed ID: 19596242
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  • 53. High-osmolarity signalling in Saccharomyces cerevisiae is modulated in a carbon-source-dependent fashion.
    Siderius M, Rots E, Mager WH.
    Microbiology (Reading); 1997 Oct 10; 143 ( Pt 10)():3241-3250. PubMed ID: 9353925
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  • 57. Cellular automata modelling of biomolecular networks dynamics.
    Bonchev D, Thomas S, Apte A, Kier LB.
    SAR QSAR Environ Res; 2010 Jan 01; 21(1):77-102. PubMed ID: 20373215
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