Itaconate mechanism of action and dissimilation in Mycobacterium tuberculosis

Manisha Priya 1
Sonu Kumar Gupta 1
Anil Koundal 2
Srajan Kapoor 3
Snigdha Tiwari 2
Saqib Kidwai 1
Luiz Pedro Sorio de Carvalho 4
Krishan Gopal Thakur 3
Dinesh Mahajan 1
Deepak Sharma 2
Yashwant Kumar 1
Ramandeep Singh 1
Publication typeJournal Article
Publication date2025-01-22
scimago Q1
wos Q1
SJR3.414
CiteScore16.5
Impact factor9.1
ISSN00278424, 10916490
Abstract

Itaconate, an abundant metabolite produced by macrophages upon interferon-γ stimulation, possesses both antibacterial and immunomodulatory properties. Despite its crucial role in immunity and antimicrobial control, its mechanism of action and dissimilation are poorly understood. Here, we demonstrate that infection of mice with Mycobacterium tuberculosis increases itaconate levels in lung tissues. We also show that exposure to itaconate inhibits M. tuberculosis growth in vitro, in macrophages, and mice. We report that exposure to sodium itaconate (ITA) interferes with the central carbon metabolism of M. tuberculosis . In addition to the inhibition of isocitrate lyase (ICL), we demonstrate that itaconate inhibits aldolase and inosine monophosphate (IMP) dehydrogenase in a concentration-dependent manner. Previous studies have shown that Rv2498c from M. tuberculosis is the bona fide (S)-citramalyl-CoA lyase, but the remaining components of the pathway remain elusive. Here, we report that Rv2503c and Rv3272 possess itaconate:succinyl-CoA transferase activity, and Rv2499c and Rv3389c possess itaconyl-CoA hydratase activity. Relative to the parental and complemented strains, the ΔRv3389c strain of M. tuberculosis was attenuated for growth in itaconate-containing medium, in macrophages, mice, and guinea pigs. The attenuated phenotype of ΔRv3389c strain of M. tuberculosis is associated with a defect in the itaconate dissimilation and propionyl-CoA detoxification pathway. This study thus reveals that multiple metabolic enzymes are targeted by itaconate in M. tuberculosis. Furthermore, we have assigned the two remaining enzymes responsible for the degradation of itaconic acid into pyruvate and acetyl-CoA. Finally, we also demonstrate the importance of enzymes involved in the itaconate dissimilation pathway for M. tuberculosis pathogenesis.

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GOST Copy
Priya M. et al. Itaconate mechanism of action and dissimilation in Mycobacterium tuberculosis // Proceedings of the National Academy of Sciences of the United States of America. 2025. Vol. 122. No. 4.
GOST all authors (up to 50) Copy
Priya M., Gupta S. K., Koundal A., Kapoor S., Tiwari S., Kidwai S., Sorio de Carvalho L. P., Thakur K. G., Mahajan D., Sharma D., Kumar Y., Singh R. Itaconate mechanism of action and dissimilation in Mycobacterium tuberculosis // Proceedings of the National Academy of Sciences of the United States of America. 2025. Vol. 122. No. 4.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1073/pnas.2423114122
UR - https://pnas.org/doi/10.1073/pnas.2423114122
TI - Itaconate mechanism of action and dissimilation in Mycobacterium tuberculosis
T2 - Proceedings of the National Academy of Sciences of the United States of America
AU - Priya, Manisha
AU - Gupta, Sonu Kumar
AU - Koundal, Anil
AU - Kapoor, Srajan
AU - Tiwari, Snigdha
AU - Kidwai, Saqib
AU - Sorio de Carvalho, Luiz Pedro
AU - Thakur, Krishan Gopal
AU - Mahajan, Dinesh
AU - Sharma, Deepak
AU - Kumar, Yashwant
AU - Singh, Ramandeep
PY - 2025
DA - 2025/01/22
PB - Proceedings of the National Academy of Sciences (PNAS)
IS - 4
VL - 122
SN - 0027-8424
SN - 1091-6490
ER -
BibTex
Cite this
BibTex (up to 50 authors) Copy
@article{2025_Priya,
author = {Manisha Priya and Sonu Kumar Gupta and Anil Koundal and Srajan Kapoor and Snigdha Tiwari and Saqib Kidwai and Luiz Pedro Sorio de Carvalho and Krishan Gopal Thakur and Dinesh Mahajan and Deepak Sharma and Yashwant Kumar and Ramandeep Singh},
title = {Itaconate mechanism of action and dissimilation in Mycobacterium tuberculosis},
journal = {Proceedings of the National Academy of Sciences of the United States of America},
year = {2025},
volume = {122},
publisher = {Proceedings of the National Academy of Sciences (PNAS)},
month = {jan},
url = {https://pnas.org/doi/10.1073/pnas.2423114122},
number = {4},
doi = {10.1073/pnas.2423114122}
}