Mycobacterium tuberculosis isocitrate lyases 1 and 2 are jointly required for in vivo growth and virulence

被引:586
作者
Muñoz-Elías, EJ [1 ]
McKinney, JD [1 ]
机构
[1] Rockefeller Univ, Lab Infect Biol, New York, NY 10021 USA
关键词
D O I
10.1038/nm1252
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Genes involved in fatty acid catabolism have undergone extensive duplication in the genus Mycobacterium, which includes the etiologic agents of leprosy and tuberculosis. Here, we show that prokaryotic- and eukaryotic-like isoforms of the glyoxylate cycle enzyme isocitrate lyase (ICL) are jointly required for fatty acid catabolism and virulence in Mycobacterium tuberculosis. Although deletion of icl1 or icl2, the genes that encode ICL1 and ICL2, respectively, had little effect on bacterial growth in macrophages and mice, deletion of both genes resulted in complete impairment of intracellular replication and rapid elimination from the lungs. The feasibility of targeting ICL1 and ICL2 for chemical inhibition was shown using a dual-specific ICL inhibitor, which blocked growth of M. tuberculosis on fatty acids and in macrophages. The absence of ICL orthologs in mammals should facilitate the development of glyoxylate cycle inhibitors as new drugs for the treatment of tuberculosis.
引用
收藏
页码:638 / 644
页数:7
相关论文
共 48 条
[1]  
Bentrup KHZ, 1999, J BACTERIOL, V181, P7161
[2]   Tetracycline-inducible gene regulation in mycobacteria [J].
Blokpoel, MCJ ;
Murphy, HN ;
O'Toole, R ;
Wiles, S ;
Runn, ESC ;
Stewart, GR ;
Young, DB ;
Robertson, BD .
NUCLEIC ACIDS RESEARCH, 2005, 33 (02) :e22
[3]   Tuberculosis - Metabolism and respiration in the absence of growth [J].
Boshoff, HIM ;
Barry, CE .
NATURE REVIEWS MICROBIOLOGY, 2005, 3 (01) :70-80
[4]   The crystal structure and active site location of isocitrate lyase from the fungus Aspergillus nidulans [J].
Britton, KL ;
Langridge, SJ ;
Baker, PJ ;
Weeradechapon, K ;
Sedelnikova, SE ;
De Lucas, JR ;
Rice, DW ;
Turner, G .
STRUCTURE, 2000, 8 (04) :349-362
[5]   Carbon nutrition of Escherichia coli in the mouse intestine [J].
Chang, DE ;
Smalley, DJ ;
Tucker, DL ;
Leatham, MP ;
Norris, WE ;
Stevenson, SJ ;
Anderson, AB ;
Grissom, JE ;
Laux, DC ;
Cohen, PS ;
Conway, T .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (19) :7427-7432
[6]   Mechanisms of antibiotic resistance and tolerance in Streptococcus pneumoniae [J].
Charpentier, E ;
Tuomanen, E .
MICROBES AND INFECTION, 2000, 2 (15) :1855-1864
[7]   Hpt, a bacterial homolog of the microsomal glucose-6-phosphate translocase, mediates rapid intracellular proliferation in Listeria [J].
Chico-Calero, I ;
Suárez, M ;
González-Zorn, B ;
Scortti, M ;
Slaghuis, J ;
Goebel, W ;
Vázquez-Boland, JA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (01) :431-436
[8]   Identification of two prpDBC gene clusters in Corynebacterium glutamicum and their involvement in propionate degradation via the 2-methylcitrate cycle [J].
Claes, WA ;
Pühler, A ;
Kalinowski, J .
JOURNAL OF BACTERIOLOGY, 2002, 184 (10) :2728-2739
[9]   Deciphering the biology of Mycobacterium tuberculosis from the complete genome sequence [J].
Cole, ST ;
Brosch, R ;
Parkhill, J ;
Garnier, T ;
Churcher, C ;
Harris, D ;
Gordon, SV ;
Eiglmeier, K ;
Gas, S ;
Barry, CE ;
Tekaia, F ;
Badcock, K ;
Basham, D ;
Brown, D ;
Chillingworth, T ;
Connor, R ;
Davies, R ;
Devlin, K ;
Feltwell, T ;
Gentles, S ;
Hamlin, N ;
Holroyd, S ;
Hornby, T ;
Jagels, K ;
Krogh, A ;
McLean, J ;
Moule, S ;
Murphy, L ;
Oliver, K ;
Osborne, J ;
Quail, MA ;
Rajandream, MA ;
Rogers, J ;
Rutter, S ;
Seeger, K ;
Skelton, J ;
Squares, R ;
Squares, S ;
Sulston, JE ;
Taylor, K ;
Whitehead, S ;
Barrell, BG .
NATURE, 1998, 393 (6685) :537-+
[10]   Production of avirulent mutants of Mycobacterium bovis with vaccine properties by the use of illegitimate recombination and screening of stationary-phase cultures [J].
Collins, DM ;
Wilson, T ;
Campbell, S ;
Buddle, BM ;
Wards, BJ ;
Hotter, G ;
de Lisle, GW .
MICROBIOLOGY-SGM, 2002, 148 :3019-3027