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Identification of Mutations Conferring Tryptanthrin Resistance to Mycobacterium smegmatis.
Frolova, Svetlana G; Klimina, Ksenia M; Kumar, Ravinder; Vatlin, Aleksey A; Salunke, Deepak B; Kendrekar, Pravin; Danilenko, Valery N; Maslov, Dmitry A.
  • Frolova SG; Laboratory of Bacterial Genetics, Vavilov Institute of General Genetics, Russian Academy of Sciences, Moscow 119333, Russia.
  • Klimina KM; Moscow Institute of Physics and Technology (State University), Dolgoprudny 141701, Russia.
  • Kumar R; Laboratory of Bacterial Genetics, Vavilov Institute of General Genetics, Russian Academy of Sciences, Moscow 119333, Russia.
  • Vatlin AA; Department of Molecular Biology and Genetics, Federal Research and Clinical Center of Physical-Chemical Medicine of Federal Medical Biological Agency, Moscow 119435, Russia.
  • Salunke DB; Department of Chemistry and Centre of Advanced Studies in Chemistry, Panjab University, Chandigarh 160014, India.
  • Kendrekar P; Laboratory of Bacterial Genetics, Vavilov Institute of General Genetics, Russian Academy of Sciences, Moscow 119333, Russia.
  • Danilenko VN; Department of Design of Functional Foods and Nutritionology, Moscow State University of Food Production, Moscow 109316, Russia.
  • Maslov DA; Department of Chemistry and Centre of Advanced Studies in Chemistry, Panjab University, Chandigarh 160014, India.
Antibiotics (Basel) ; 10(1)2020 Dec 23.
Article in English | MEDLINE | ID: covidwho-1222049
ABSTRACT
Tuberculosis (TB), caused by Mycobacterium tuberculosis, is a global burden, responsible for over 1 million deaths annually. The emergence and spread of drug-resistant M. tuberculosis strains (MDR-, XDR- and TDR-TB) is the main challenge in global TB-control, requiring the development of novel drugs acting on new biotargets, thus able to overcome the drug-resistance. Tryptanthrin is a natural alkaloid, with great therapeutic potential due to its simple way of synthesis and wide spectrum of biological activities including high bactericidal activity on both drug-susceptible and MDR M. tuberculosis strains. InhA was suggested as the target of tryptanthrins by in silico modeling, making it a promising alternative to isoniazid, able to overcome drug resistance provided by katG mutations. However, neither the mechanism of action of tryptanthrin nor the mechanism of resistance to tryptanthrins was ever confirmed in vitro. We show that the MmpS5-MmpL5 efflux system is able to provide resistance to tryptanthrins using an in-house test-system. Comparative genomic analysis of spontaneous tryptanthrin-resistant M. smegmatis mutants showed that mutations in MSMEG_1963 (EmbR transcriptional regulator) lead to a high-level resistance, while those in MSMEG_5597 (TetR transcriptional regulator) to a low-level one. Mutations in an MFS transporter gene (MSMEG_4427) were also observed, which might be involved in providing a basal level of tryptanthrins-resistance.
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Full text: Available Collection: International databases Database: MEDLINE Language: English Year: 2020 Document Type: Article Affiliation country: Antibiotics10010006

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Full text: Available Collection: International databases Database: MEDLINE Language: English Year: 2020 Document Type: Article Affiliation country: Antibiotics10010006