Mycobacterial Pathogenomics and Evolution

被引:34
作者
Bottai, Daria [1 ]
Stinear, Timothy P. [2 ]
Supply, Philip [3 ,4 ,5 ,6 ]
Brosch, Roland [7 ]
机构
[1] Univ Pisa, Dipartimento Ric Traslaz & Nuove Tecnol Med, Pisa, Italy
[2] Univ Melbourne, Dept Microbiol & Immunol, Parkville, Vic, Australia
[3] CNRS, UMR 8204, Paris, France
[4] INSERM, U1019, Paris, France
[5] Inst Pasteur, Ctr Infect & Immun Lille, Lille, France
[6] Univ Lille Nord France, Lille, France
[7] Inst Pasteur, Unit Integrated Mycobacterial Pathogen, Paris, France
基金
英国医学研究理事会;
关键词
D O I
10.1128/microbiolspec.MGM2-0025-2013
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Most mycobacterial species are harmless saprophytes, often found in aquatic environments. A few species seem to have evolved from this pool of environmental mycobacteria into major human pathogens, such as Mycobacterium tuberculosis, the agent of tuberculosis, Mycobacterium leprae, the leprosy bacillus, and Mycobacterium ulcerans, the agent of Buruli ulcer. While the pathogenicity of M. ulcerans relates to the acquisition of a large plasmid encoding a polyketide-derived toxin, the molecular mechanisms by which M. leprae or M. tuberculosis have evolved to cause disease are complex and involve the interaction between the pathogen and the host. Here we focus on M. tuberculosis and closely related mycobacteria and discuss insights gained from recent genomic and functional studies. Comparison of M. tuberculosis genome data with sequences from nontuberculous mycobacteria, such as Mycobacterium marinum or Mycobacterium kansasii, provides a perception of the more distant evolution of M. tuberculosis, while the recently accomplished genome sequences of multiple tubercle bacilli with smooth colony morphology, named Mycobacterium canettii, have allowed the ancestral gene pool of tubercle bacilli to be estimated. The resulting findings are instrumental for our understanding of the pathogenomic evolution of tuberculosis-causing mycobacteria. Comparison of virulent and attenuated members of the M. tuberculosis complex has further contributed to identification of a specific secretion pathway, named ESX or Type VII secretion. The molecular machines involved are key elements for mycobacterial pathogenicity, strongly influencing the ability of M. tuberculosis to cope with the immune defense mounted by the host.
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页数:19
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共 178 条
[1]   PPE and PE_PGRS proteins of Mycobacterium marinum are transported via the type VII secretion system ESX-5 [J].
Abdallah, Abdallah M. ;
Verboom, Theo ;
Weerdenburg, Eveline M. ;
Gey van Pittius, Nicolaas C. ;
Mahasha, Phetole W. ;
Jimenez, Connie ;
Parra, Marcela ;
Cadieux, Nathalie ;
Brennan, Michael J. ;
Appelmelk, Ben J. ;
Bitter, Wilbert .
MOLECULAR MICROBIOLOGY, 2009, 73 (03) :329-340
[2]   Type VII secretion - mycobacteria show the way [J].
Abdallah, M. Abdallah ;
Gey Van Pittius, Nicolaas C. ;
Champion, Patricia A. DiGiuseppe ;
Cox, Jeffery ;
Luirink, Joen ;
Vandenbroucke-Grauls, Christina M. J. E. ;
Appelmelk, Ben J. ;
Bitter, Wilbert .
NATURE REVIEWS MICROBIOLOGY, 2007, 5 (11) :883-891
[3]   A specific secretion system mediates PPE41 transport in pathogenic mycobacteria [J].
Abdallah, M. Abdallah ;
Verboom, Theo ;
Hannes, Fredericke ;
Safi, Mohamad ;
Strong, Michael ;
Eisenberg, David ;
Musters, Rene J. P. ;
Vendenbroucke-Grauls, Christina M. J. E. ;
Appelmelk, Ben J. ;
Luirink, Joen ;
Bitter, Wilbert .
MOLECULAR MICROBIOLOGY, 2006, 62 (03) :667-679
[4]   ESX-1-induced apoptosis is involved in cell-to-cell spread of Mycobacterium tuberculosis [J].
Aguilo, J. I. ;
Alonso, H. ;
Uranga, S. ;
Marinova, D. ;
Arbues, A. ;
de Martino, A. ;
Anel, A. ;
Monzon, M. ;
Badiola, J. ;
Pardo, J. ;
Brosch, Roland ;
Martin, Carlos .
CELLULAR MICROBIOLOGY, 2013, 15 (12) :1994-2005
[5]   Novel Mycobacterium tuberculosis Complex Pathogen, M. mungi [J].
Alexander, Kathleen A. ;
Laver, Pete N. ;
Michel, Anita L. ;
Williams, Mark ;
van Helden, Paul D. ;
Warren, Robin M. ;
Gey van Pittius, Nicolaas C. .
EMERGING INFECTIOUS DISEASES, 2010, 16 (08) :1296-1299
[6]   A diarylquinoline drug active on the ATP synthase of Mycobacterium tuberculosis [J].
Andries, K ;
Verhasselt, P ;
Guillemont, J ;
Göhlmann, HWH ;
Neefs, JM ;
Winkler, H ;
Van Gestel, J ;
Timmerman, P ;
Zhu, M ;
Lee, E ;
Williams, P ;
de Chaffoy, D ;
Huitric, E ;
Hoffner, S ;
Cambau, E ;
Truffot-Pernot, C ;
Lounis, N ;
Jarlier, V .
SCIENCE, 2005, 307 (5707) :223-227
[7]   Elevation of Mycobacterium tuberculosis subsp. caprae Aranaz et al. 1999 to species rank as Mycobacterium caprae comb. nov., sp. nov. [J].
Aranaz, A ;
Cousins, D ;
Mateos, A ;
Domínguez, L .
INTERNATIONAL JOURNAL OF SYSTEMATIC AND EVOLUTIONARY MICROBIOLOGY, 2003, 53 :1785-1789
[8]   CLONING OF AN MYCOBACTERIUM-TUBERCULOSIS DNA FRAGMENT ASSOCIATED WITH ENTRY AND SURVIVAL INSIDE CELLS [J].
ARRUDA, S ;
BOMFIM, G ;
KNIGHTS, R ;
HUIMABYRON, T ;
RILEY, LW .
SCIENCE, 1993, 261 (5127) :1454-1457
[9]   Live tuberculosis vaccines based on phoP mutants:: a step towards clinical trials [J].
Asensio, Jesus A. Gonzalo ;
Arbues, Ainhoa ;
Perez, Esther ;
Gicquel, Brigitte ;
Martin, Carlos .
EXPERT OPINION ON BIOLOGICAL THERAPY, 2008, 8 (02) :201-211
[10]   Genotypic analysis of Mycobacterium tuberculosis in Bangladesh and prevalence of the Beijing strain [J].
Banu, S ;
Gordon, SV ;
Palmer, S ;
Islam, R ;
Ahmed, S ;
Alam, KM ;
Cole, ST ;
Brosch, R .
JOURNAL OF CLINICAL MICROBIOLOGY, 2004, 42 (02) :674-682