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Divergent effects of itaconate isomers on Coxiella burnetii growth in macrophages and in axenic culture
Article
Siddique, Md Nur A Alam, Kellermeier, Fabian, Ölke, Martha, Zhao, Mingming, Büssow, Konrad, Oefner, Peter J., Lührmann, Anja, Dettmer, Katja and Lang, Roland
(2024)
Divergent effects of itaconate isomers on Coxiella burnetii growth in macrophages and in axenic culture.
Frontiers in Immunology 15, p. 1427457.
DOI to cite this document: 10.5283/epub.59667
Abstract
Aconitate decarboxylase-1 (ACOD1) is expressed by activated macrophages and generates itaconate that exerts anti-microbial and immunoregulatory effects. ACOD1-itaconate is essential for macrophage-mediated control of the intracellular pathogen Coxiella (C.) burnetii, which causes Q fever. Two isomers of itaconate, mesaconate and citraconate, have overlapping yet distinct activity on macrophage ...
Aconitate decarboxylase-1 (ACOD1) is expressed by activated macrophages and generates itaconate that exerts anti-microbial and immunoregulatory effects. ACOD1-itaconate is essential for macrophage-mediated control of the intracellular pathogen Coxiella (C.) burnetii, which causes Q fever. Two isomers of itaconate, mesaconate and citraconate, have overlapping yet distinct activity on macrophage metabolism and inflammatory gene expression. Here, we found that all three isomers inhibited the growth of C. burnetii in axenic culture in ACCM-2 medium. However, only itaconate reduced C. burnetii replication efficiently in Acod1-/- macrophages. In contrast, addition of citraconate strongly increased C. burnetii replication in Acod1+/- macrophages, whereas mesaconate weakly enhanced bacterial burden in Acod1-/- macrophages. Analysis of intracellular isomers showed that exogenous citraconate and mesaconate inhibited the generation of itaconate by infected Acod1+/- macrophages. Uptake of added isomers into Acod1-/- macrophages was increased after infection for itaconate and mesaconate, but not for citraconate. Mesaconate, but not citraconate, competed with itaconate for uptake into macrophages. Taken together, inhibition of itaconate generation by macrophages and interference with the uptake of extracellular itaconate could be identified as potential mechanisms behind the divergent effects of citraconate and mesaconate on C. burnetii replication in macrophages or in axenic culture.
Involved Institutions
Details
| Item type | Article | ||||||||
| Journal or Publication Title | Frontiers in Immunology | ||||||||
| Open Access Type | CC-License | ||||||||
| Volume | 15 | ||||||||
| Page Range | p. 1427457 | ||||||||
| Date | 2 August 2024 | ||||||||
| Date of publication | 21 Nov 2024 14:47 | ||||||||
| Institutions | Medicine > Institut für Funktionelle Genomik > Lehrstuhl für Funktionelle Genomik (Prof. Oefner) | ||||||||
| Identification Number |
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| Keywords | ACOD1; IRG1; citraconate; infection; itaconate; mesaconate; transport; uptake | ||||||||
| Dewey Decimal Classification | 600 Technology > 610 Medical sciences Medicine | ||||||||
| Status | Published | ||||||||
| Refereed | Yes, this version has been refereed | ||||||||
| Created at the University of Regensburg | Partially | ||||||||
| URN of the UB Regensburg | urn:nbn:de:bvb:355-epub-596672 | ||||||||
| Item ID | 59667 |
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