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Journal Abstract Search


104 related items for PubMed ID: 27488615

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  • 3. Molecular characterization of a germination-specific muramidase from Clostridium perfringens S40 spores and nucleotide sequence of the corresponding gene.
    Chen Y, Miyata S, Makino S, Moriyama R.
    J Bacteriol; 1997 May; 179(10):3181-7. PubMed ID: 9150212
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  • 5. Host serum factor triggers germination of Clostridium perfringens spores lacking the cortex hydrolysis machinery.
    Paredes-Sabja D, Sarker MR.
    J Med Microbiol; 2011 Dec; 60(Pt 12):1734-1741. PubMed ID: 21799201
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  • 7. Location and stoichiometry of the protease CspB and the cortex-lytic enzyme SleC in Clostridium perfringens spores.
    Banawas S, Korza G, Paredes-Sabja D, Li Y, Hao B, Setlow P, Sarker MR.
    Food Microbiol; 2015 Sep; 50():83-7. PubMed ID: 25998819
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  • 8. Partial characterization of an enzyme fraction with protease activity which converts the spore peptidoglycan hydrolase (SleC) precursor to an active enzyme during germination of Clostridium perfringens S40 spores and analysis of a gene cluster involved in the activity.
    Shimamoto S, Moriyama R, Sugimoto K, Miyata S, Makino S.
    J Bacteriol; 2001 Jun; 183(12):3742-51. PubMed ID: 11371539
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  • 12. Physiological role of carbon dioxide in spore germination of Clostridium perfringens S40.
    Kato S, Masayama A, Yoshimura T, Hemmi H, Tsunoda H, Kihara T, Moriyama R.
    J Biosci Bioeng; 2009 Dec; 108(6):477-83. PubMed ID: 19914579
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  • 14. Germination-specific cortex-lytic enzymes from Clostridium perfringens S40 spores: time of synthesis, precursor structure and regulation of enzymatic activity.
    Urakami K, Miyata S, Moriyama R, Sugimoto K, Makino S.
    FEMS Microbiol Lett; 1999 Apr 15; 173(2):467-73. PubMed ID: 10227176
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  • 16. Structural and functional analysis of the CspB protease required for Clostridium spore germination.
    Adams CM, Eckenroth BE, Putnam EE, Doublié S, Shen A.
    PLoS Pathog; 2013 Feb 15; 9(2):e1003165. PubMed ID: 23408892
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  • 18. A gene (sleC) encoding a spore-cortex-lytic enzyme from Clostridium perfringens S40 spores; cloning, sequence analysis and molecular characterization.
    Miyata S, Moriyama R, Miyahara N, Makino S.
    Microbiology (Reading); 1995 Oct 15; 141 ( Pt 10)():2643-50. PubMed ID: 7582025
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  • 19. The crystal structure of maleylacetate reductase from Rhizobium sp. strain MTP-10005 provides insights into the reaction mechanism of enzymes in its original family.
    Fujii T, Sato A, Okamoto Y, Yamauchi T, Kato S, Yoshida M, Oikawa T, Hata Y.
    Proteins; 2016 Aug 15; 84(8):1029-42. PubMed ID: 27040018
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  • 20. Crystal structure of the catalytic domain of the Bacillus cereus SleB protein, important in cortex peptidoglycan degradation during spore germination.
    Li Y, Jin K, Setlow B, Setlow P, Hao B.
    J Bacteriol; 2012 Sep 15; 194(17):4537-45. PubMed ID: 22730118
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