首页 | 本学科首页   官方微博 | 高级检索  
     


Determination of catalase, peroxidase, and superoxide dismutase within the genus Legionella.
Authors:L Pine   P S Hoffman   G B Malcolm   R F Benson     M G Keen
Abstract:We examined 40 strains of Legionella for reduced-oxygen scavenging enzymes. Using a simple reaction chamber with a Swinney filter for the Beers and Sizer assay, we determined the catalase activity of live cells grown on buffered charcoal-yeast extract agar. For 29 strains of Legionella pneumophila, the apparent first-order rate constants for catalase ranged from 0.000 to 0.005. Similarly, low values ranging from 0.001 to 0.005 were observed for Legionella wadsworthii, Legionella oakridgensis, and Legionella gormanii. High catalase activities were found for Legionella jordanis, Legionella longbeachae, Legionella micdadei, and Legionella bozemanii, with first-order rate constant values of 0.010 to 0.035. Cell-free extracts were analyzed for catalase, peroxidase, and superoxide dismutase. Cell-free extracts of all strains had superoxide dismutase levels ranging from 8.2 to 30.5 U per mg of protein. The species could be characterized by their catalase and peroxidase since L. pneumophila and L. gormanii had only peroxidase (relative molecular weight [Mr], 150,000); L. dumoffii had a peroxidase (Mr, 150,000) plus a catalase (Mr, 174,000); and all remaining species had catalase only (Mr, 300,000, 220,000, or 150,000).
Keywords:
引证文献(本文共被引8次):
[1]、W A O\'Connell, J M Bangsborg, and N P Cianciotto.Characterization of a Legionella micdadei mip mutant.[J].Infection and immunity,1995,63(8):2840-2845.
[2]、A B Sadosky, J W Wilson, H M Steinman, and H A Shuman.The iron superoxide dismutase of Legionella pneumophila is essential for viability.[J].Journal of bacteriology,1994,176(12):3790-3799.
[3]、J M Mengaud and M A Horwitz.The major iron-containing protein of Legionella pneumophila is an aconitase homologous with the human iron-responsive element-binding protein.[J].Journal of bacteriology,1993,175(17):5666-5676.
[4]、J N Dowling, A K Saha, and R H Glew.Virulence factors of the family Legionellaceae.[J].Microbiological reviews,1992,56(1):32-60.
[5]、N P Cianciotto, J M Bangsborg, B I Eisenstein, and N C Engleberg.Identification of mip-like genes in the genus Legionella.[J].Infection and immunity,1990,58(9):2912-2918.
[6]、K F Fox and A Brown.Application of numerical systematics to the phenotypic differentiation of legionellae.[J].Journal of clinical microbiology,1989,27(9):1952-1955.
[7]、W C Winn, Jr.Legionnaires disease: historical perspective.[J].Clinical microbiology reviews,1988,1(1):60-81.
[8]、L Pine, P S Hoffman, G B Malcolm, R F Benson, and M J Franzus.Role of keto acids and reduced-oxygen-scavenging enzymes in the growth of Legionella species.[J].Journal of clinical microbiology,1986,23(1):33-42.
正在获取相似文献,请稍候...
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号