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Journal Abstract Search


157 related items for PubMed ID: 2105936

  • 1.
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  • 2. Regulation of glycerol and maltose uptake by the IIAGlc-like domain of IINag of the phosphotransferase system in Salmonella typhimurium LT2.
    van der Vlag J, Postma PW.
    Mol Gen Genet; 1995 Jul 28; 248(2):236-41. PubMed ID: 7651347
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  • 3. Determination of a 17,484 bp nucleotide sequence around the 39 degrees region of the Bacillus subtilis chromosome and similarity analysis of the products of putative ORFs.
    Akagawa E, Kurita K, Sugawara T, Nakamura K, Kasahara Y, Ogasawara N, Yamane K.
    Microbiology (Reading); 1995 Dec 28; 141 ( Pt 12)():3241-5. PubMed ID: 8574415
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  • 4. Binding of enzyme IIAGlc, a component of the phosphoenolpyruvate:sugar phosphotransferase system, to the Escherichia coli lactose permease.
    Sondej M, Weinglass AB, Peterkofsky A, Kaback HR.
    Biochemistry; 2002 Apr 30; 41(17):5556-65. PubMed ID: 11969416
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  • 5. Current studies on the bacterial phosphotransferase system in the Saier laboratory (La Jolla, California, summer, 1988).
    Saier MH.
    FEMS Microbiol Rev; 1989 Jun 30; 5(1-2):183-92. PubMed ID: 2699248
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  • 8. Deduction of consensus binding sequences on proteins that bind IIAGlc of the phosphoenolpyruvate:sugar phosphotransferase system by cysteine scanning mutagenesis of Escherichia coli lactose permease.
    Sondej M, Sun J, Seok YJ, Kaback HR, Peterkofsky A.
    Proc Natl Acad Sci U S A; 1999 Mar 30; 96(7):3525-30. PubMed ID: 10097069
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  • 9. Mechanism of regulation of the lactose permease by the phosphotransferase system in Escherichia coli: evidence for protein-protein interaction.
    Osumi T, Saier MH.
    Ann Microbiol (Paris); 1982 Mar 30; 133(2):269-73. PubMed ID: 7044217
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  • 10. Resistance of the melibiose carrier to inhibition by the phosphotransferase system due to substitutions of amino acid residues in the carrier of Salmonella typhimurium.
    Kuroda M, de Waard S, Mizushima K, Tsuda M, Postma P, Tsuchiya T.
    J Biol Chem; 1992 Sep 15; 267(26):18336-41. PubMed ID: 1526973
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  • 12. Involvement of the central loop of the lactose permease of Escherichia coli in its allosteric regulation by the glucose-specific enzyme IIA of the phosphoenolpyruvate-dependent phosphotransferase system.
    Hoischen C, Levin J, Pitaknarongphorn S, Reizer J, Saier MH.
    J Bacteriol; 1996 Oct 15; 178(20):6082-6. PubMed ID: 8830713
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  • 13. Sequence analyses and evolutionary relationships among the energy-coupling proteins Enzyme I and HPr of the bacterial phosphoenolpyruvate: sugar phosphotransferase system.
    Reizer J, Hoischen C, Reizer A, Pham TN, Saier MH.
    Protein Sci; 1993 Apr 15; 2(4):506-21. PubMed ID: 7686067
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  • 17. Topography of the surface of the Escherichia coli phosphotransferase system protein enzyme IIAglc that interacts with lactose permease.
    Sondej M, Seok YJ, Badawi P, Koo BM, Nam TW, Peterkofsky A.
    Biochemistry; 2000 Mar 21; 39(11):2931-9. PubMed ID: 10715113
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  • 18. Crystal structure of the IIB subunit of a fructose permease (IIBLev) from Bacillus subtilis.
    Schauder S, Nunn RS, Lanz R, Erni B, Schirmer T.
    J Mol Biol; 1998 Feb 27; 276(3):591-602. PubMed ID: 9551099
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  • 19. The nucleotide sequence of ptsH gene from Klebsiella pneumoniae.
    Titgemeyer F, Eisermann R, Hengstenberg W, Lengeler JW.
    Nucleic Acids Res; 1990 Apr 11; 18(7):1898. PubMed ID: 2186369
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  • 20. Phosphoenolpyruvate:sugar phosphotransferase system of Bacillus subtilis: nucleotide sequence of ptsX, ptsH and the 5'-end of ptsI and evidence for a ptsHI operon.
    Gonzy-Tréboul G, Zagorec M, Rain-Guion MC, Steinmetz M.
    Mol Microbiol; 1989 Jan 11; 3(1):103-12. PubMed ID: 2497294
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