Bacterial growth and cell division: a mycobacterial perspective

被引:277
作者
Hett, Erik C. [1 ]
Rubin, Eric J. [1 ]
机构
[1] Harvard Univ, Sch Publ Hlth, Dept Immunol & Infect Dis, Boston, MA 02115 USA
关键词
D O I
10.1128/MMBR.00028-07
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The genus Mycobacterium is best known for its two major pathogenic species, M. tuberculosis and M. leprae, the causative agents of two of the world's oldest diseases, tuberculosis and leprosy, respectively. M. tuberculosis kills approximately two million people each year and is thought to latently infect one-third of the world's population. One of the most remarkable features of the nonsporulating M. tuberculosis is its ability to remain dormant within an individual for decades before reactivating into active tuberculosis. Thus, control of cell division is a critical part of the disease. The mycobacterial cell wall has unique characteristics and is impermeable to a number of compounds, a feature in part responsible for inherent resistance to numerous drugs. The complexity of the cell wall represents a challenge to the organism, requiring specialized mechanisms to allow cell division to occur. Besides these mycobacterial specializations, all bacteria face some common challenges when they divide. First, they must maintain their normal architecture during and after cell division. In the case of mycobacteria, that means synthesizing the many layers of complex cell wall and maintaining their rod shape. Second, they need to coordinate synthesis and breakdown of cell wall components to maintain integrity throughout division. Finally, they need to regulate cell division in response to environmental stimuli. Here we discuss these challenges and the mechanisms that mycobacteria employ to meet them. Because these organisms are difficult to study, in many cases we extrapolate fiom information known for gram-negative bacteria or more closely related GC-rich gram-positive organisms.
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页码:126 / +
页数:33
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共 464 条
[1]   Identification of two penicillin-binding multienzyme complexes in Haemophilus influenzae [J].
Alaedini, A ;
Day, RA .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1999, 264 (01) :191-195
[2]   Molecular function of WhiB4/Rv3681c of Mycobacterium tuberculosis H37Rv:: a [4Fe-4S] cluster co-ordinating protein disulphide reductase [J].
Alam, Md. Suhail ;
Garg, Saurabh K. ;
Agrawal, Pushpa .
MOLECULAR MICROBIOLOGY, 2007, 63 (05) :1414-1431
[3]   A C-terminal deletion mutant of Mycobacterium tuberculosis FtsZ shows fast polymerization in vitro [J].
Anand, SP ;
Rajeswari, H ;
Gupta, P ;
Srinivasan, R ;
Indi, S ;
Ajitkumar, P .
MICROBIOLOGY-SGM, 2004, 150 :1119-1121
[4]   Assembly dynamics of FtsZ rings in Bacillus subtilis and Escherichia coli and effects of FtsZ-regulating proteins [J].
Anderson, DE ;
Gueiros-Filho, FJ ;
Erickson, HP .
JOURNAL OF BACTERIOLOGY, 2004, 186 (17) :5775-5781
[5]   The virulence-associated twocomponent PhoP-PhoR system controls the biosynthesis of polyketide-derived lipids in Mycobacterium tuberculosis [J].
Asensio, JG ;
Maia, C ;
Ferrer, NL ;
Barilone, N ;
Laval, F ;
Soto, CY ;
Winter, N ;
Daffé, M ;
Gicquel, B ;
Martín, C ;
Jackson, M .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2006, 281 (03) :1313-1316
[6]   Peptidoglycan structural dynamics during germination of Bacillus subtilis 168 endospores [J].
Atrih, A ;
Zöllner, P ;
Allmaier, G ;
Williamson, MP ;
Foster, SJ .
JOURNAL OF BACTERIOLOGY, 1998, 180 (17) :4603-4612
[7]   Spatial and temporal control of differentiation and cell cycle progression in Caulobacter crescentus [J].
Ausmees, N ;
Jacobs-Wagner, C .
ANNUAL REVIEW OF MICROBIOLOGY, 2003, 57 :225-247
[8]   FtsK is a DNA motor protein that activates chromosome dimer resolution by switching the catalytic state of the XerC and XerD recombinases [J].
Aussel, L ;
Barre, FX ;
Aroyo, M ;
Stasiak, A ;
Stasiak, AZ ;
Sherratt, D .
CELL, 2002, 108 (02) :195-205
[9]   Expression and characterization of the Mycobacterium tuberculosis serine/threonine protein kinase PknB [J].
Av-Gay, Y ;
Jamil, S ;
Drews, SJ .
INFECTION AND IMMUNITY, 1999, 67 (11) :5676-5682
[10]   The eukaryotic-like Ser/Thr protein kinases of Mycobacterium tuberculosis [J].
Av-Gay, Y ;
Everett, M .
TRENDS IN MICROBIOLOGY, 2000, 8 (05) :238-244