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Regulation of Virulence Genes Salyers & Whitt: Bacterial Pathogenesis: A Molecular Approach ASM Press, 1994 Dorman, C.J: Genetics of Bacterial Virulence.

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Presentation on theme: "Regulation of Virulence Genes Salyers & Whitt: Bacterial Pathogenesis: A Molecular Approach ASM Press, 1994 Dorman, C.J: Genetics of Bacterial Virulence."— Presentation transcript:

1 Regulation of Virulence Genes Salyers & Whitt: Bacterial Pathogenesis: A Molecular Approach ASM Press, 1994 Dorman, C.J: Genetics of Bacterial Virulence. Blackwell Scientific Publications, 1994

2 Virulence Factors Invasion Penetration Protection Nutrition Dissemination

3 Overview Gene Regulation Genetic Organization In Vitro Methods for Studying Virulence Factors Protein Secretion

4 Environmental Pressures Influencing Virulence Factor Production Osmolarity O 2 Concentration CO 2 Concentration pH O 2 and N intermediates Lack of nutrients Inorganic ion concentrations

5 Environmental Modulation vs Phase Variation Antigenic Variation

6 CHANGE IN DNA SEQUENCE Gene AmplificationGene Rearrangement CHANGE IN NUMBER OF TRANSCRIPTS ActivatorsRepressors CHANGE IN AMOUNT OF ACTIVE GENE PRODUCT Covalent Modification Proteolytic Cleavage Binding to Host Cell Proteins

7 Genetic Variation in Pathogenic Bacteria Homologous Recombination  Slip Strand Mispairing  Opa – N. gonorrhoeae – CTCTT  LPS – H. influenzae – CAAT  Pilin – H. Influenzae – TA Site-specific Recombination  Gene Inversion  Flagellin - S. typhimurium

8 Phase Variation I: Gene Inversion

9 Stages in interaction of N. gonorrhoeae with cultured mammalian cells

10

11 pilE Antigenic Variation

12 Phase Variation II: Slipped Strand Mispairing

13 Transcriptional Regulation Fur repressor (ferric uptake repression) AraC transcriptional activator family LysR transcriptional activator family Two-Component Regulatory Systems

14 Ara C Family

15 LysR Transcriptional Activator Family

16 Membrane Signal Transduction

17 Genetic Organization of Virulence Factors: Sources Plasmid transformation (horizontal gene transfer) e.g Shigella flexneri, Salmonella spp, Yersinia spp, Clostridium tetani. Phage lysogeny e.g C. botulinus toxins, S. pyogenes, C. diphtheria toxin, Cholera toxin Pathogenicity Islands Transposons Integrons

18 Pathogenicity Islands Carriage of many virulence genes Association with pathogenic species Different GC content compared to rest of host genome Association with tRNA genes and/or insertion sequence elements, suggesting phage origin. Presence of transposable elements Instability


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