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Journal Abstract Search


303 related items for PubMed ID: 2505068

  • 21. Expression of the ogt gene in wild-type and ada mutants of E. coli.
    Potter PM, Kleibl K, Cawkwell L, Margison GP.
    Nucleic Acids Res; 1989 Oct 25; 17(20):8047-60. PubMed ID: 2682522
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  • 22. Characterization of cDNA encoding mouse DNA repair protein O6-methylguanine-DNA methyltransferase and high-level expression of the wild-type and mutant proteins in Escherichia coli.
    Shiota S, von Wronski MA, Tano K, Bigner DD, Brent TP, Mitra S.
    Biochemistry; 1992 Feb 25; 31(7):1897-903. PubMed ID: 1371399
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  • 23. Expression of Escherichia coli dam gene in Bacillus subtilis provokes DNA damage response: N6-methyladenine is removed by two repair pathways.
    Guha S, Guschlbauer W.
    Nucleic Acids Res; 1992 Jul 25; 20(14):3607-15. PubMed ID: 1641327
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  • 24. cDNA cloning and chromosomal assignment of the human O6-methylguanine-DNA methyltransferase. cDNA expression in Escherichia coli and gene expression in human cells.
    Rydberg B, Spurr N, Karran P.
    J Biol Chem; 1990 Jun 05; 265(16):9563-9. PubMed ID: 2188979
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  • 25. Isolation and molecular genetic characterization of the Bacillus subtilis gene (infB) encoding protein synthesis initiation factor 2.
    Shazand K, Tucker J, Chiang R, Stansmore K, Sperling-Petersen HU, Grunberg-Manago M, Rabinowitz JC, Leighton T.
    J Bacteriol; 1990 May 05; 172(5):2675-87. PubMed ID: 2110148
    [Abstract] [Full Text] [Related]

  • 26. A single amino acid change in human O6-alkylguanine-DNA alkyltransferase decreasing sensitivity to inactivation by O6-benzylguanine.
    Crone TM, Pegg AE.
    Cancer Res; 1993 Oct 15; 53(20):4750-3. PubMed ID: 8402653
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  • 27. Construction and characterization of mutants of Salmonella typhimurium deficient in DNA repair of O6-methylguanine.
    Yamada M, Sedgwick B, Sofuni T, Nohmi T.
    J Bacteriol; 1995 Mar 15; 177(6):1511-9. PubMed ID: 7883708
    [Abstract] [Full Text] [Related]

  • 28. Multiple species of Bacillus subtilis DNA alkyltransferase involved in the adaptive response to simple alkylating agents.
    Morohoshi F, Munakata N.
    J Bacteriol; 1987 Feb 15; 169(2):587-92. PubMed ID: 3100503
    [Abstract] [Full Text] [Related]

  • 29. High-level expression of the cloned ada gene of Escherichia coli by deletion of its regulatory sequence.
    Tano K, Foote RS, Mitra S.
    Gene; 1988 Apr 29; 64(2):305-11. PubMed ID: 3042510
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  • 33. The Saccharomyces cerevisiae MGT1 DNA repair methyltransferase gene: its promoter and entire coding sequence, regulation and in vivo biological functions.
    Xiao W, Samson L.
    Nucleic Acids Res; 1992 Jul 25; 20(14):3599-606. PubMed ID: 1641326
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  • 37. Sequencing reveals similarity of the wild-type div+ gene of Bacillus subtilis to the Escherichia coli secA gene.
    Sadaie Y, Takamatsu H, Nakamura K, Yamane K.
    Gene; 1991 Feb 01; 98(1):101-5. PubMed ID: 1901557
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  • 38. Chemotactic methyltransferase promotes adaptation to repellents in Bacillus subtilis.
    Kirsch ML, Zuberi AR, Henner D, Peters PD, Yazdi MA, Ordal GW.
    J Biol Chem; 1993 Dec 05; 268(34):25350-6. PubMed ID: 8244966
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  • 39. Cloning and nucleotide sequence of the Bacillus subtilis hom gene coding for homoserine dehydrogenase. Structural and evolutionary relationships with Escherichia coli aspartokinases-homoserine dehydrogenases I and II.
    Parsot C, Cohen GN.
    J Biol Chem; 1988 Oct 15; 263(29):14654-60. PubMed ID: 3139660
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  • 40. Cloning and characterization of Bacillus subtilis homologs of Escherichia coli cell division genes ftsZ and ftsA.
    Beall B, Lowe M, Lutkenhaus J.
    J Bacteriol; 1988 Oct 15; 170(10):4855-64. PubMed ID: 3139638
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