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Journal Abstract Search


128 related items for PubMed ID: 11160115

  • 1. The miaA mutator phenotype of Escherichia coli K-12 requires recombination functions.
    Zhao J, Leung HE, Winkler ME.
    J Bacteriol; 2001 Mar; 183(5):1796-800. PubMed ID: 11160115
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  • 3. The MutS C terminus is essential for mismatch repair activity in vivo.
    Calmann MA, Nowosielska A, Marinus MG.
    J Bacteriol; 2005 Sep; 187(18):6577-9. PubMed ID: 16159793
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  • 5. Structure of Escherichia coli K-12 miaA and characterization of the mutator phenotype caused by miaA insertion mutations.
    Connolly DM, Winkler ME.
    J Bacteriol; 1991 Mar; 173(5):1711-21. PubMed ID: 1999389
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  • 6. Dominant negative mutator mutations in the mutS gene of Escherichia coli.
    Wu TH, Marinus MG.
    J Bacteriol; 1994 Sep; 176(17):5393-400. PubMed ID: 8071216
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  • 7. Separation of mutation avoidance and antirecombination functions in an Escherichia coli mutS mutant.
    Calmann MA, Nowosielska A, Marinus MG.
    Nucleic Acids Res; 2005 Sep; 33(4):1193-200. PubMed ID: 15731339
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  • 8. Interspecies recombination and mismatch repair. Generation of mosaic genes and genomes.
    Matic I, Taddei F, Radman M.
    Methods Mol Biol; 2000 Sep; 152():149-57. PubMed ID: 10957975
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  • 9. DNA mismatch repair: molecular mechanisms and biological function.
    Schofield MJ, Hsieh P.
    Annu Rev Microbiol; 2003 Sep; 57():579-608. PubMed ID: 14527292
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  • 10. Multicopy single-stranded DNA of Escherichia coli enhances mutation and recombination frequencies by titrating MutS protein.
    Maas WK, Wang C, Lima T, Hach A, Lim D.
    Mol Microbiol; 1996 Feb; 19(3):505-9. PubMed ID: 8830241
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  • 11. Molecular mechanisms of DNA mismatch repair.
    Hsieh P.
    Mutat Res; 2001 Jul 12; 486(2):71-87. PubMed ID: 11425513
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  • 13. 2-aminopurine allows interspecies recombination by a reversible inactivation of the Escherichia coli mismatch repair system.
    Matic I, Babic A, Radman M.
    J Bacteriol; 2003 Feb 12; 185(4):1459-61. PubMed ID: 12562818
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  • 14. Evolutionary implications of the frequent horizontal transfer of mismatch repair genes.
    Denamur E, Lecointre G, Darlu P, Tenaillon O, Acquaviva C, Sayada C, Sunjevaric I, Rothstein R, Elion J, Taddei F, Radman M, Matic I.
    Cell; 2000 Nov 22; 103(5):711-21. PubMed ID: 11114328
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  • 15. Molecular analysis of mutS expression and mutation in natural isolates of pathogenic Escherichia coli.
    Li B, Tsui HT, LeClerc JE, Dey M, Winkler ME, Cebula TA.
    Microbiology (Reading); 2003 May 22; 149(Pt 5):1323-1331. PubMed ID: 12724393
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  • 16. Costs and benefits of high mutation rates: adaptive evolution of bacteria in the mouse gut.
    Giraud A, Matic I, Tenaillon O, Clara A, Radman M, Fons M, Taddei F.
    Science; 2001 Mar 30; 291(5513):2606-8. PubMed ID: 11283373
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  • 17. Mismatch repair is diminished during stationary-phase mutation.
    Harris RS, Feng G, Ross KJ, Sidhu R, Thulin C, Longerich S, Szigety SK, Hastings PJ, Winkler ME, Rosenberg SM.
    Mutat Res; 1999 Jul 30; 437(1):51-60. PubMed ID: 10425389
    [Abstract] [Full Text] [Related]

  • 18. Escherichia coli DNA polymerase IV mutator activity: genetic requirements and mutational specificity.
    Wagner J, Nohmi T.
    J Bacteriol; 2000 Aug 30; 182(16):4587-95. PubMed ID: 10913093
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  • 19. Pseudomonas survival strategies in cystic fibrosis.
    LeClerc JE, Cebula TA.
    Science; 2000 Jul 21; 289(5478):391-2. PubMed ID: 10939947
    [No Abstract] [Full Text] [Related]

  • 20. Functional analysis of the Arabidopsis thaliana mismatch repair gene MSH2.
    Adé J, Haffani Y, Beizile FJ.
    Genome; 2001 Aug 21; 44(4):651-7. PubMed ID: 11550901
    [Abstract] [Full Text] [Related]


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