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Mycobacterium tuberculosis strain with deletions in menT3 and menT4 is attenuated and confers protection in mice and guinea pigs.

Authors :
Gosain, Tannu Priya
Chugh, Saurabh
Rizvi, Zaigham Abbas
Chauhan, Neeraj Kumar
Kidwai, Saqib
Thakur, Krishan Gopal
Awasthi, Amit
Singh, Ramandeep
Source :
Nature Communications; 6/27/2024, Vol. 15 Issue 1, p1-16, 16p
Publication Year :
2024

Abstract

The genome of Mycobacterium tuberculosis encodes for a large repertoire of toxin-antitoxin systems. In the present study, MenT3 and MenT4 toxins belonging to MenAT subfamily of TA systems have been functionally characterized. We demonstrate that ectopic expression of these toxins inhibits bacterial growth and this is rescued upon co-expression of their cognate antitoxins. Here, we show that simultaneous deletion of menT3 and menT4 results in enhanced susceptibility of M. tuberculosis upon exposure to oxidative stress and attenuated growth in guinea pigs and mice. We observed reduced expression of transcripts encoding for proteins that are essential or required for intracellular growth in mid-log phase cultures of ΔmenT4ΔT3 compared to parental strain. Further, the transcript levels of proteins involved in efficient bacterial clearance were increased in lung tissues of ΔmenT4ΔT3 infected mice relative to parental strain infected mice. We show that immunization of mice and guinea pigs with ΔmenT4ΔT3 confers significant protection against M. tuberculosis infection. Remarkably, immunization of mice with ΔmenT4ΔT3 results in increased antigen-specific T<subscript>H</subscript>1 bias and activated memory T cell response. We conclude that MenT3 and MenT4 are important for M. tuberculosis pathogenicity and strains lacking menT3 and menT4 have the potential to be explored further as vaccine candidates. Gosain et al.'s work aims to enhance understanding of the contribution of MenT3 and MenT4 toxins belonging to MenAT TA systems to the physiology and pathogenesis of Mycobacterium tuberculosis. The authors show that strains lacking these proteins is attenuated and confers protection in vivo. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20411723
Volume :
15
Issue :
1
Database :
Complementary Index
Journal :
Nature Communications
Publication Type :
Academic Journal
Accession number :
178150882
Full Text :
https://doi.org/10.1038/s41467-024-49246-5