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Molecular Genetics of Mycobacteria
Graham F. Hatfull (Edited by), GF Hatfull (Author), William R. Jacobs, Jr. (Edited by)
9781555818838, Wiley
Hardback, published 1 September 2014
832 pages
28.4 x 21.8 x 4.6 cm, 2.517 kg
A comprehensive collection of perspectives by experts in mycobacterial molecular biology Mycobacterium tuberculosis causes one in four avoidable deaths in the developing world and kills more adults than malaria, AIDS, and all tropical diseases combined. Tuberculosis was named a global health emergency by the World Health Organization, a distinction no other disease has received. Although the study of mycobacterial genetics has expanded dramatically, with new investigations into mycobacterial growth, replication, metabolism, physiology, drug susceptibility, and virulence, most of the problems in tuberculosis control that existed in 2000 remain today. Advances in our understanding of mycobacterial genetics have been reflected in exciting recent developments. New diagnostic approaches can identify drug resistance within a few hours, promising new drugs are progressing through the pipeline and into the clinic, and a range of newly developed vaccines are being evaluated. It is an exciting time as the fruits of 30 years of intensive genetic investigation are finally beginning to emerge. Written by leading experts in the field, Molecular Genetics of Mycobacteria, Second Edition, This book is an invaluable resource for anyone interested in the molecular genetics and molecular biology of mycobacteria.
Contributors ix Preface xvii I. Genomes, Genomics, and Genetic Exchange 1. Gene Transfer in Mycobacterium tuberculosis: Shuttle Phasmids to Enlightenment 3 2. Mycobacterial Pathogenomics and Evolution 27 3. BCG Vaccines 49 4. Distributive Conjugal Transfer: New Insights into Horizontal Gene Transfer and Genetic Exchange in Mycobacteria 61 5. Molecular Genetics of Mycobacteriophages 81 6. Genetics of Phage Lysis 121 Ii. Gene Expression and Regulation 7. Sigma Factors: Key Molecules in Mycobacterium tuberculosis Physiology and Virulence 137 8. Transcription Factor Binding Site Mapping Using ChIP-Seq 161 9. Noncoding RNA in Mycobacteria 183 10. Two-Component Regulatory Systems of Mycobacteria 209 11. Regulated Expression Systems for Mycobacteria and Their Applications 225 Iii. The Mycobacterial Proteome 12. Mycobacterium tuberculosis in the Proteomics Era 241 13. Structural Annotation of the Mycobacterium tuberculosis Proteome 261 14. Cyclic AMP Signaling in Mycobacteria 281 IV. Metabolism 15. The Physiology and Genetics of Oxidative Stress in Mycobacteria 299 16. Metabolomics of Central Carbon Metabolism in Mycobacterium tuberculosis 323 17. Mycobacterial Lipidomics 341 18. Genetics of Mycobacterial Trehalose Metabolism 361 19. Metallobiology of Tuberculosis 377 20. Energetics of Respiration and Oxidative Phosphorylation in Mycobacteria 389 V. Genetics of Drug Resistance 21. Molecular Basis of Drug Resistance in Mycobacterium tuberculosis 413 22. Resistance to Isoniazid and Ethionamide in Mycobacterium tuberculosis: Genes, Mutations, and Causalities 431 23. The Molecular Genetics of Fluoroquinolone Resistance in Mycobacterium tuberculosis 455 24. Mechanisms of Pyrazinamide Action and Resistance 479 25. Genetic Strategies for Identifying New Drug Targets 493 VI. Genetics of Membrane and Cell Wall Biosynthesis 26. Genetics of Peptidoglycan Biosynthesis 513 27. Genetics of Mycobacterial Arabinogalactan and Lipoarabinomannan Assembly 535 28. Genetics of Capsular Polysaccharides and Cell Envelope (Glyco)lipids 559 29. The Molecular Genetics of Mycolic Acid Biosynthesis 611 VII. Genetics of Macromolecular Biosynthesis 30. Nucleotide Metabolism and DNA Replication 635 31. Double-Strand DNA Break Repair in Mycobacteria 657 32. The Pup-Proteasome System of Mycobacteria 667 33. Mycobacterium tuberculosis Serine/Threonine Protein Kinases 681 VIII. The Mycobacterial Lifestyle, Persistence, and Macrophage Survival 34. The Spectrum of Drug Susceptibility in Mycobacteria 711 35. The Sculpting of the Mycobacterium tuberculosis Genome by Host Cell–Derived Pressures 727 36. Evasion of Innate and Adaptive Immunity by Mycobacterium tuberculosis 747 37. Mycobacterial Biofilms 773 Index 785
William R. Jacobs, Jr.
Daria Bottai, Timothy P. Stinear, Philip Supply, and Roland Brosch
Vanessa Tran, Jun Liu, and Marcel A. Behr
Keith M. Derbyshire and Todd A. Gray
Graham F. Hatfull
Madalena Pimentel
Riccardo Manganelli
Suma Jaini, Anna Lyubetskaya, Antonio Gomes, Matthew Peterson, Sang Tae Park, Sahadevan Raman, Gary Schoolnik, and James Galagan
Kristine B. Arnvig, Teresa Cortes, and Douglas B. Young
Tanya Parish
Dirk Schnappinger and Sabine Ehrt
Martin Gengenbacher, Jeppe Mouritsen, Olga T. Schubert, Ruedi Aebersold, and Stefan H. E. Kaufmann
Nagasuma Chandra, Sankaran Sandhya, and Praveen Anand
Gwendowlyn S. Knapp and Kathleen A. McDonough
Bridgette M. Cumming, Dirk Lamprecht, Ryan M. Wells, Vikram Saini, James H. Mazorodze, and Adrie J. C. Steyn
Anthony D. Baughn and Kyu Y. Rhee
Emilie Layre, Reem Al-Mubarak, John T. Belisle, and D. Branch Moody
Rainer Kalscheuer and Hendrik Koliwer-Brandl
G. Marcela Rodriguez and Olivier Neyrolles
Gregory M. Cook, Kiel Hards, Catherine Vilcheze, Travis Hartman, and Michael Berney
Keira A. Cohen, William R. Bishai, and Alexander S. Pym
Catherine Vilcheze and William R. Jacobs, Jr.
Claudine Mayer and Howard Takiff
Ying Zhang, Wanliang Shi, Wenhong Zhang, and Denis Mitchison
Andrej Trauner, Christopher M. Sassetti, and Eric J. Rubin
Martin S. Pavelka, Jr., Sebabrata Mahapatra, and Dean C. Crick
Monika Jankute, Shipra Grover, Helen L. Birch, and Gurdyal S. Besra
Mamadou Daffe, Dean C. Crick, and Mary Jackson
Jakub Pawełczyk and Laurent Kremer
Digby F. Warner, Joanna C. Evans, and Valerie Mizrahi
Michael S. Glickman
Nadine J. Bode and K. Heran Darwin
Sladjana Prisic and Robert N. Husson
Bree B. Aldridge, Iris Keren, and Sarah M. Fortune
David G. Russell, Wonsik Lee, Shumin Tan, Neelima Sukumar, Maria Podinovskaia, Ruth J. Fahey, and Brian C. VanderVen
Michael F. Goldberg, Neeraj K. Saini, and Steven A. Porcelli
Jacobs P. Richards and Anil K. Ojha
Subject Areas: Clinical & internal medicine [MJ]
