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- Mycobacterium tuberculosis and the response of its host
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2. The pathogenesis of tuberculosis
- Dr. William R. Bishai
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3. Immune response and rational development of vaccines and biomarkers
- Prof. Dr. Stefan H. E. Kaufmann
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4. Molecular mechanisms of drug resistance in M. tuberculosis
- Dr. Daniela Cirillo
- The epidemiology of tuberculosis
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5. The basic epidemiology of tuberculosis (TB)
- Dr. David Dowdy
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6. Global epidemiology of TB
- Dr. Philippe Glaziou
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7. Social determinants of tuberculosis
- Dr. Knut Lönnroth
- The control of tuberculosis
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8. Treatment of tuberculosis
- Dr. Jean-Pierre Zellweger
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9. The End TB Strategy towards TB elimination 1
- Dr. Mario Raviglione
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10. The End TB Strategy towards TB elimination 2
- Dr. Mario Raviglione
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11. Financing TB care and control
- Dr. Christopher Fitzpatrick
- Dr. Andrea Pantoja
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12. Tuberculosis and COVID-19
- Prof. Giovanni Battista Migliori
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13. Multidrug resistant tuberculosis (MDR-TB): an update
- Dr. Simon Tiberi
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14. Impact of HIV on tuberculosis in the developing world and how to manage it
- Prof. Anthony D. Harries
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16. TB in children
- Prof. Ben J. Marais
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17. Community engagement in tuberculosis care
- Ms. Lana Syed
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18. India: the epicentre of global TB control
- Dr. Madhukar Pai
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19. Community engagement in TB care
- Dr. Haileyesus Getahun
- Research and development for new approaches in the control of tuberculosis
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20. Development of new regimens for tuberculosis
- Dr. Zhenkun Ma
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22. Pharmacometrics in tuberculosis
- Prof. Charles A. Peloquin
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23. Extrapulmonary tuberculosis
- Dr. Scott Heysell
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24. The role of surgery in tuberculosis management
- Dr. Richard Zaleskis
- Archived Lectures *These may not cover the latest advances in the field
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25. The development of current treatments for tuberculosis
- Dr. Andrew Nunn
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26. The pathogenesis of tuberculosis
- Dr. William R. Bishai
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27. Basics of tuberculosis epidemiology
- Prof. Frank Cobelens
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29. The international approach to the control of tuberculosis
- Dr. Mario Raviglione
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30. Public-private mix for TB care and control
- Dr. Mukund Uplekar
Printable Handouts
Navigable Slide Index
- Introduction
- Mycobacteria phylogenetic tree
- Slowly growing mycobacteria
- Evolutionary success of M. tuberculosis: genetics
- Genome of M. tuberculosis H37Rv
- M. tuberculosis H37Rv - 4000 genes annotated
- M. tuberculosis H37Rv - zoom-in
- Broad classification of M. tuberculosis genes
- Identifying the essentials genes of M. tuberculosis
- 600 essential genes predicted using TraSH
- High density transposon mutation screens & NGS
- Example for an essential gene - pknB
- M. tub. serine threonine protein kinases (STPK)
- Genomic region pknB - a conserved operon
- PknB is essential for M. tuberculosis
- Identifying virulence factors
- Mycobacterial survival - genetic requirements
- Genes encoding ESX-1 type 7 secretion system
- Other ways to predict genes involved in virulence
- Mycobacterium bovis BCG
- Mycobacterium microti
- Region of difference 1 (RD1)
- RD1 positive vs. RD1 negative proteomes
- BCG-RD1 different colony morphology than control
- The RD1 region codes for ESX-1 (1)
- The RD1 region codes for ESX-1 (2)
- Novel gene nomenclature for T7SS - ESX-1
- Re-integration of RD1 region into BCG
- ESX-1 mediated processes differ in BCG & M. tub.
- M. tuberculosis has 5 ESX/type VII systems
- Comparative genomics within the tubercle bacilli
- Host range of tubercle bacilli
- Comparative genomics identifies RDs
- Sequence conservation of the RD9 junction region
- Comparative genomics identifies TbD1
- TbD1 absent from many M. tuberculosis strains
- Deletion events and the M. tuberculosis complex
- Evolutionary pathway of the tubercle bacilli
- M. tub. variants: presence around the world
- The oldest case of human tuberculosis (in Britain)
- Broad diversity of worldwide M. tuberculosis (1)
- Broad diversity of worldwide M. tuberculosis (2)
- Conclusions and perspectives
- Acknowledgements
Topics Covered
- Mycobacterium tuberculosis
- genome information
- essential genes- virulence genes
- type VII secretion system involved in virulence and host pathogen interaction- genomics and evolution of tuberculosis-causing mycobacteria
Links
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Talk Citation
Brosch, R. (2013, February 28). The genetic structure of Mycobacterium tuberculosis - insights into genome organisation and evolution of the causative agent of tuberculosis [Video file]. In The Biomedical & Life Sciences Collection, Henry Stewart Talks. Retrieved December 21, 2024, from https://doi.org/10.69645/RSOZ2298.Export Citation (RIS)
Publication History
Financial Disclosures
- Dr. Roland Brosch has not informed HSTalks of any commercial/financial relationship that it is appropriate to disclose.
The genetic structure of Mycobacterium tuberculosis - insights into genome organisation and evolution of the causative agent of tuberculosis
Published on February 28, 2013
34 min
A selection of talks on Microbiology
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