NSC 18725, a Pyrazole Derivative Inhibits Growth of Intracellular Mycobacterium tuberculosis by Induction of Autophagy

被引:23
作者
Arora, Garima [1 ]
Gagandeep [2 ]
Behura, Assirbad [3 ]
Gosain, Tannu Priya [1 ]
Shaliwal, Ravi P. [1 ]
Kidwai, Saqib [1 ]
Singh, Padam [1 ]
Kandi, Shamseer Kulangara [2 ]
Dhiman, Rohan [3 ]
Rawat, Diwan S. [2 ]
Singh, Ramandeep [1 ]
机构
[1] Translat Hlth Sci & Technol Inst, TB Res Lab, Faridabad, India
[2] Univ Delhi, Fac Sci, Dept Chem, New Delhi, India
[3] Natl Inst Technol, Lab Mycobacterial Immunol, Dept Life Sci, Rourkela, India
关键词
Mycobacterium tuberculosis; phenotypic screening; pyrazole scaffold; NSC-18725; autophagy; MULTIDRUG-RESISTANT TUBERCULOSIS; DRUG DISCOVERY; IDENTIFICATION; PERSISTENCE; MODEL; BCG;
D O I
10.3389/fmicb.2019.03051
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The increasing incident rates of drug-resistant tuberculosis (DR-TB) is a global health concern and has been further complicated by the emergence of extensive and total drug-resistant strains. Identification of new chemical entities which are compatible with first-line TB drugs, possess activity against DR-, and metabolically less active bacteria is required to tackle this epidemic. Here, we have performed phenotypic screening of a small molecule library against Mycobacterium bovis BCG and identified 24 scaffolds that exhibited MIC99 values of at least 2.5 mu M. The most potent small molecule identified in our study was a nitroso containing pyrazole derivative, NSC 18725. We observed a significant reduction in viable bacilli load of starved Mycobacterium tuberculosis upon exposure to NSC 18725. The action of NSC 18725 was "synergistic" with isoniazid (INH) and "additive" with other drugs in our checkerboard assays. Structure-activity relationship (SAR) studies of the parent compound revealed that pyrazole derivatives without a functional group at fourth position lacked anti-mycobacterial activity in vitro. The derivative with para-chlorophenyl substitution at the first position of the pyrazole ring was the most active scaffold. We also demonstrate that NSC 18725 is able to induce autophagy in differentiated THP-1 macrophages. The induction of autophagy by NSC 18725 is the major mechanism for the killing of intracellular slow and fast-growing mycobacteria. Taken together, these observations support the identification of NSC 18725 as an antimycobacterial compound, which synergizes with INH, is active against non-replicative mycobacteria and induces autophagy in macrophages.
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页数:13
相关论文
共 54 条
[11]   Low-oxygen-recovery assay for high-throughput screening of compounds against nonreplicating Mycobacterium tuberculosis [J].
Cho, Sang Hyun ;
Warit, Saradee ;
Wan, Baojie ;
Hwang, Chang Hwa ;
Pauli, Guido F. ;
Franzblau, Scott G. .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2007, 51 (04) :1380-1385
[12]   High-content imaging of Mycobacterium tuberculosis-infected macrophages: an in vitro model for tuberculosis drug discovery [J].
Christophe, Thierry ;
Ewann, Fanny ;
Jeon, Hee Kyoung ;
Cechetto, Jonathan ;
Brodin, Priscille .
FUTURE MEDICINAL CHEMISTRY, 2010, 2 (08) :1283-1293
[13]   High Content Screening Identifies Decaprenyl-Phosphoribose 2′ Epimerase as a Target for Intracellular Antimycobacterial Inhibitors [J].
Christophe, Thierry ;
Jackson, Mary ;
Jeon, Hee Kyoung ;
Fenistein, Denis ;
Contreras-Dominguez, Monica ;
Kim, Jaeseung ;
Genovesio, Auguste ;
Carralot, Jean-Philippe ;
Ewann, Fanny ;
Kim, Eun Hye ;
Lee, Sae Yeon ;
Kang, Sunhee ;
Seo, Min Jung ;
Park, Eun Jung ;
Skovierova, Henrieta ;
Pham, Ha ;
Riccardi, Giovanna ;
Nam, Ji Youn ;
Marsollier, Laurent ;
Kempf, Marie ;
Joly-Guillou, Marie-Laure ;
Oh, Taegwon ;
Shin, Won Kyung ;
No, Zaesung ;
Nehrbass, Ulf ;
Brosch, Roland ;
Cole, Stewart T. ;
Brodin, Priscille .
PLOS PATHOGENS, 2009, 5 (10)
[14]  
DAIDONE G, 1992, FARMACO, V47, P203
[15]   Potentials of Host-Directed Therapies in Tuberculosis Management [J].
Dara, Yash ;
Volcani, Doron ;
Shah, Kush ;
Shin, Kevin ;
Venketaraman, Vishwanath .
JOURNAL OF CLINICAL MEDICINE, 2019, 8 (08)
[16]   Recent advances for identification of new scaffolds and drug targets for Mycobacterium tuberculosis [J].
Dhiman, Rohan ;
Singh, Ramandeep .
IUBMB LIFE, 2018, 70 (09) :905-916
[17]   Multidrug-Resistant Tuberculosis and Culture Conversion with Bedaquiline [J].
Diacon, Andreas H. ;
Pym, Alexander ;
Grobusch, Martin P. ;
de los Rios, Jorge M. ;
Gotuzzo, Eduardo ;
Vasilyeva, Irina ;
Leimane, Vaira ;
Andries, Koen ;
Bakare, Nyasha ;
De Marez, Tine ;
Haxaire-Theeuwes, Myriam ;
Lounis, Nacer ;
Meyvisch, Paul ;
De Paepe, Els ;
van Heeswijk, Rolf P. G. ;
Dannemann, Brian .
NEW ENGLAND JOURNAL OF MEDICINE, 2014, 371 (08) :723-732
[18]   Identification of Compounds with pH-Dependent Bactericidal Activity against Mycobacterium tuberculosis [J].
Early, Julie ;
Ollinger, Juliane ;
Darby, Crystal ;
Alling, Torey ;
Mullen, Steven ;
Casey, Allen ;
Gold, Ben ;
Ochoada, Jason ;
Wiernicki, Todd ;
Masquelin, Thierry ;
Nathan, Carl ;
Hipskind, Philip A. ;
Parish, Tanya .
ACS INFECTIOUS DISEASES, 2019, 5 (02) :272-280
[19]  
Glaziou P, 2015, CSH PERSPECT MED, V5, DOI [10.1055/s-0038-1651492, 10.1101/cshperspect.a017798]
[20]   Identification of Novel Inhibitors of Nonreplicating Mycobacterium tuberculosis Using a Carbon Starvation Model [J].
Grant, Sarah Schmidt ;
Kawate, Tomohiko ;
Nag, Partha P. ;
Silvis, Melanie R. ;
Gordon, Katherine ;
Stanley, Sarah A. ;
Kazyanskaya, Edward ;
Nietupski, Raymond ;
Golas, Aaron ;
Fitzgerald, Michael ;
Cho, Sanghyun ;
Franzblau, Scott G. ;
Hung, Deborah T. .
ACS CHEMICAL BIOLOGY, 2013, 8 (10) :2224-2234