Literature DB >> 6263860

Manganese, superoxide dismutase, and oxygen tolerance in some lactic acid bacteria.

F S Archibald, I Fridovich.   

Abstract

A previous study of the aerotolerant bacterium Lactobacillus plantarum, which lacks superoxide dismutase (SOD), demonstrated that it possesses a novel substitute for this defensive enzyme. Thus, L. plantarum contains 20 to 25 mM Mn(II),m in a dialyzable form, which is able to scavenge O2- apparently as effectively as do the micromolar levels of SOD present in most other organisms. This report describes a survey of the lactic acid bacteria. The substitution of millimolar levels of Mn(II) for micromolar levels of SOD is a common occurrence in this group of microorganisms, which contained either SOD or high levels of Mn(II), but not both. Two strains were found which had neither high levels of Mn(II) nor SOD, and they were, as was expected, very oxygen intolerant. Lactic acid bacteria containing SOD grew better aerobically than anaerobically, whereas the organisms containing Mn(II) in place of SOD showed aerobic growth which was best, at best, equal to anaerobic growth. Plumbagin (5-hydroxy-2-methyl-1,4-naphthoquinone) increases the rate of O2- production in these organisms. Lactobacillus strains containing high intracellular Mn(II) were more resistant to the oxygen-dependent toxicity of plumbagin than were strains containing lower levels of Mn(II). The results support the conclusion that a high internal level of Mn(II) provides these organisms with an important defence against endogenous O2-.

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Year:  1981        PMID: 6263860      PMCID: PMC216946          DOI: 10.1128/jb.146.3.928-936.1981

Source DB:  PubMed          Journal:  J Bacteriol        ISSN: 0021-9193            Impact factor:   3.490


  27 in total

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4.  Studies related to antitumor antibiotics. Part XIV. Reactions of mitomycin B with DNA.

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Authors:  R E Lynch; B C Cole
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7.  The phylogeny of prokaryotes.

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Authors:  S A Lesko; R J Lorentzen; P O Ts'o
Journal:  Biochemistry       Date:  1980-06-24       Impact factor: 3.162

9.  Distinguishing between Mn-containing and Fe-containing superoxide dismutases in crude extracts of cells.

Authors:  T Kirby; J Blum; I Kahane; I Fridovich
Journal:  Arch Biochem Biophys       Date:  1980-05       Impact factor: 4.013

10.  The mechanism of DNA strand breakage by vitamin C and superoxide and the protective roles of catalase and superoxide dismutase.

Authors:  A R Morgan; R L Cone; T M Elgert
Journal:  Nucleic Acids Res       Date:  1976-05       Impact factor: 16.971

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  71 in total

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2.  Interplay between manganese and zinc homeostasis in the human pathogen Streptococcus pneumoniae.

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3.  Catalase (KatA) and alkyl hydroperoxide reductase (AhpC) have compensatory roles in peroxide stress resistance and are required for survival, persistence, and nasal colonization in Staphylococcus aureus.

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4.  Complete genome sequence of the probiotic lactic acid bacterium Lactobacillus acidophilus NCFM.

Authors:  Eric Altermann; W Michael Russell; M Andrea Azcarate-Peril; Rodolphe Barrangou; B Logan Buck; Olivia McAuliffe; Nicole Souther; Alleson Dobson; Tri Duong; Michael Callanan; Sonja Lick; Alice Hamrick; Raul Cano; Todd R Klaenhammer
Journal:  Proc Natl Acad Sci U S A       Date:  2005-01-25       Impact factor: 11.205

5.  Mn2+-dependent regulation of multiple genes in Streptococcus pneumoniae through PsaR and the resultant impact on virulence.

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7.  Influence of Manganese on Growth of a Sheathless Strain of Leptothrix discophora.

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Journal:  Appl Environ Microbiol       Date:  1985-03       Impact factor: 4.792

8.  Manganese regulation of virulence factors and oxidative stress resistance in Neisseria gonorrhoeae.

Authors:  Hsing-Ju Wu; Kate L Seib; Yogitha N Srikhanta; Jennifer Edwards; Stephen P Kidd; Tina L Maguire; Amanda Hamilton; Kuan-Tin Pan; He-Hsuan Hsiao; Chen-Wen Yao; Sean M Grimmond; Michael A Apicella; Alastair G McEwan; Andrew H-J Wang; Michael P Jennings
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Review 9.  Manganese complexes: diverse metabolic routes to oxidative stress resistance in prokaryotes and yeast.

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10.  Expression of a heterologous manganese superoxide dismutase gene in intestinal lactobacilli provides protection against hydrogen peroxide toxicity.

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