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PUBMED FOR HANDHELDS

Journal Abstract Search


188 related items for PubMed ID: 6793239

  • 41. Effects of mucopolysaccharides on penicillin-induced lysis of Staphylococcus aureus.
    Kiriyama T, Miyake Y, Sugai M, Kobayashi K, Yoshiga K, Takada K, Suginaka H.
    J Med Microbiol; 1987 Dec; 24(4):325-31. PubMed ID: 2447280
    [Abstract] [Full Text] [Related]

  • 42. Chemotactic repellents of Bacillus subtilis.
    Ordal GW, Goldman DJ.
    J Mol Biol; 1976 Jan 05; 100(1):103-8. PubMed ID: 814244
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  • 43. Isolation and characterization of uncoupler-resistant mutants of Bacillus subtilis.
    Guffanti AA, Clejan S, Falk LH, Hicks DB, Krulwich TA.
    J Bacteriol; 1987 Oct 05; 169(10):4469-78. PubMed ID: 2820927
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  • 44. [The surface membrane charge of bacteria and its role in serine proteinase secretion by Bacillus subtilis cells].
    Artemov AV, Barskiĭ EL, Melikhovskiĭ VA, Nazarenko AV, Samuilov VD, Khakimov SA.
    Nauchnye Doki Vyss Shkoly Biol Nauki; 1990 Oct 05; (2):113-9. PubMed ID: 2112959
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  • 45. Purification and properties of autolytic endo-beta-N-acetylglucosaminidase and the N-acetylmuramyl-L-alanine amidase from Bacillus subtilis strain 168.
    Rogers HJ, Taylor C, Rayter S, Ward JB.
    J Gen Microbiol; 1984 Sep 05; 130(9):2395-402. PubMed ID: 6150066
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  • 46. Effect of lipoteichoic acid and lipids on lysis of intact cells of Streptococcus faecalis.
    Cleveland RF, Daneo-Moore L, Wicken AJ, Shockman GD.
    J Bacteriol; 1976 Sep 05; 127(3):1582-4. PubMed ID: 821938
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  • 49. Control of membrane potential by external H+ concentration in Bacillus subtilis as determined by an ion-selective electrode.
    Hosoi S, Mochizuki N, Hayashi S, Kasai M.
    Biochim Biophys Acta; 1980 Aug 14; 600(3):844-52. PubMed ID: 6773573
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  • 50. Anomalies in cell wall turnover associated with the growth temperature of Bacillus subtilis.
    Wu TL, Koch AL, Doyle RJ.
    Biochim Biophys Acta; 1993 Feb 13; 1156(2):173-80. PubMed ID: 8094013
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  • 52. ATP-dependent cadmium transport by the cadA cadmium resistance determinant in everted membrane vesicles of Bacillus subtilis.
    Tsai KJ, Yoon KP, Lynn AR.
    J Bacteriol; 1992 Jan 13; 174(1):116-21. PubMed ID: 1530844
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  • 53. DnaK and GroEL chaperones are recruited to the Bacillus subtilis membrane after short-term ethanol stress.
    Seydlová G, Halada P, Fišer R, Toman O, Ulrych A, Svobodová J.
    J Appl Microbiol; 2012 Apr 13; 112(4):765-74. PubMed ID: 22268681
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  • 57. Biosurfactant-Mediated Membrane Depolarization Maintains Viability during Oxygen Depletion in Bacillus subtilis.
    Arjes HA, Vo L, Dunn CM, Willis L, DeRosa CA, Fraser CL, Kearns DB, Huang KC.
    Curr Biol; 2020 Mar 23; 30(6):1011-1022.e6. PubMed ID: 32059765
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  • 58. [Study of membrane potential of Bacillus subtilis and Escherichia coli cells by the penetration ions methods].
    Grinius LL, Daugelabichius RIu, Al'kimavichius GA.
    Biokhimiia; 1980 Sep 23; 45(9):1609-18. PubMed ID: 6166329
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  • 59. Cell walls of a teichoic acid deficient mutant of Bacillus subtilis.
    Van Heijenoort J, Menjon D, Flouret B, Szulmajster J, Laporte J, Batelier G.
    Eur J Biochem; 1971 Jun 11; 20(3):442-50. PubMed ID: 4996443
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  • 60. Linearmycins are lytic membrane-targeting antibiotics.
    Stubbendieck RM, Brock DJ, Pellois JP, Gill JJ, Straight PD.
    J Antibiot (Tokyo); 2018 Mar 11; 71(3):372-381. PubMed ID: 29348524
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