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High Content Screening Identifies Decaprenyl-Phosphoribose 2′ Epimerase as a Target for Intracellular Antimycobacterial Inhibitors
被引:279
作者:
Christophe, Thierry
[1
]
Jackson, Mary
[2
]
Jeon, Hee Kyoung
Fenistein, Denis
Contreras-Dominguez, Monica
[1
]
Kim, Jaeseung
Genovesio, Auguste
Carralot, Jean-Philippe
[1
]
Ewann, Fanny
[1
]
Kim, Eun Hye
[1
]
Lee, Sae Yeon
Kang, Sunhee
Seo, Min Jung
Park, Eun Jung
Skovierova, Henrieta
[2
]
Pham, Ha
[2
]
Riccardi, Giovanna
[3
]
Nam, Ji Youn
Marsollier, Laurent
[4
]
Kempf, Marie
[4
]
Joly-Guillou, Marie-Laure
[4
]
Oh, Taegwon
[5
]
Shin, Won Kyung
[5
]
No, Zaesung
Nehrbass, Ulf
Brosch, Roland
[6
]
Cole, Stewart T.
[7
]
Brodin, Priscille
[1
,6
]
机构:
[1] Inst Pasteur Korea, Biol Intracellular Pathogens Inserm Avenir Grp, Songnam, Gyeonggi Do, South Korea
[2] Colorado State Univ, Dept Microbiol Immunol & Pathol, Mycobacteria Res Labs, Ft Collins, CO 80523 USA
[3] Univ Pavia, Dipartimento Genet & Microbiol, I-27100 Pavia, Italy
[4] Univ Angers, Grp Etud Interact Hote Pathogene, Angers, France
[5] Int TB Res Ctr, Masan, South Korea
[6] Inst Pasteur, Paris, France
[7] Ecole Polytech Fed Lausanne, Global Hlth Inst, Lausanne, Switzerland
基金:
美国国家卫生研究院;
关键词:
NONREPLICATING MYCOBACTERIUM-TUBERCULOSIS;
HIGH-THROUGHPUT;
CELLS;
MACROPHAGES;
BIOSYNTHESIS;
ETHAMBUTOL;
DISCOVERY;
VIRULENCE;
SURVIVAL;
SYNTHASE;
D O I:
10.1371/journal.ppat.1000645
中图分类号:
Q93 [微生物学];
学科分类号:
071005 ;
100705 ;
摘要:
A critical feature of Mycobacterium tuberculosis, the causative agent of human tuberculosis (TB), is its ability to survive and multiply within macrophages, making these host cells an ideal niche for persisting microbes. Killing the intracellular tubercle bacilli is a key requirement for efficient tuberculosis treatment, yet identifying potent inhibitors has been hampered by labor-intensive techniques and lack of validated targets. Here, we present the development of a phenotypic cell-based assay that uses automated confocal fluorescence microscopy for high throughput screening of chemicals that interfere with the replication of M. tuberculosis within macrophages. Screening a library of 57,000 small molecules led to the identification of 135 active compounds with potent intracellular anti-mycobacterial efficacy and no host cell toxicity. Among these, the dinitrobenzamide derivatives (DNB) showed high activity against M. tuberculosis, including extensively drug resistant (XDR) strains. More importantly, we demonstrate that incubation of M. tuberculosis with DNB inhibited the formation of both lipoarabinomannan and arabinogalactan, attributable to the inhibition of decaprenyl-phospho-arabinose synthesis catalyzed by the decaprenyl-phosphoribose 2' epimerase DprE1/DprE2. Inhibition of this new target will likely contribute to new therapeutic solutions against emerging XDR-TB. Beyond validating the high throughput/content screening approach, our results open new avenues for finding the next generation of antimicrobials.
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