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Glutaminolysis and Fumarate Accumulation Integrate Immunometabolic and Epigenetic Programs in Trained Immunity
Rob J.W. Arts, Boris Novakovic, Rob ter Horst, Agostinho Carvalho, Siroon Bekkering, Ekta Lachmandas, Fernando Rodrigues, Ricardo Silvestre, Shih‐Chin Cheng, Shuang-Yin Wang, Ehsan Habibi, Luís G. Gonçalves, Inês Mesquita, Cristina Cunha, Arjan van Laarhoven
Cell Metabolism · 2016 · ▲ 873 citations
Abstract
Induction of trained immunity (innate immune memory) is mediated by activation of immune and metabolic pathways that result in epigenetic rewiring of cellular functional programs. Through network-level integration of transcriptomics and metabolomics data, we identify glycolysis, glutaminolysis, and the cholesterol synthesis pathway as indispensable for the induction of trained immunity by β-glucan in monocytes. Accumulation of fumarate, due to glutamine replenishment of the TCA cycle, integrates immune and metabolic circuits to induce monocyte epigenetic reprogramming by inhibiting KDM5 histone demethylases. Furthermore, fumarate itself induced an epigenetic program similar to β-glucan-induced trained immunity. In line with this, inhibition of glutaminolysis and cholesterol synthesis in mice reduced the induction of trained immunity by β-glucan. Identification of the metabolic pathways leading to induction of trained immunity contributes to our understanding of innate immune memory and opens new therapeutic avenues.
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- 10.1016/j.cmet.2016.10.008
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- 2026-07-29 MST
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APA
Arts, R.J., Novakovic, B., Horst, R.T., Carvalho, A., Bekkering, S., Lachmandas, E., Rodrigues, F., Silvestre, R., Cheng, S., Wang, S., Habibi, E., Gonçalves, L.G., Mesquita, I., Cunha, C., Laarhoven, A.V., Veerdonk, F.L.V.D., Williams, D.L., Meer, J.V.D., Logie, C., & O'neill, L. (2016). Glutaminolysis and Fumarate Accumulation Integrate Immunometabolic and Epigenetic Programs in Trained Immunity. <em>Cell Metabolism</em>. https://doi.org/10.1016/j.cmet.2016.10.008
Vancouver
Arts RJ, Novakovic B, Horst RT, Carvalho A, Bekkering S, Lachmandas E, et al. Glutaminolysis and Fumarate Accumulation Integrate Immunometabolic and Epigenetic Programs in Trained Immunity. Cell Metabolism. 2016. doi:10.1016/j.cmet.2016.10.008.
BibTeX
@article{rob2016Glutam,
title = {Glutaminolysis and Fumarate Accumulation Integrate Immunometabolic and Epigenetic Programs in Trained Immunity},
author = {Rob J.W. Arts and Boris Novakovic and Rob ter Horst and Agostinho Carvalho and Siroon Bekkering and Ekta Lachmandas and Fernando Rodrigues and Ricardo Silvestre and Shih‐Chin Cheng and Shuang-Yin Wang and Ehsan Habibi and Luís G. Gonçalves and Inês Mesquita and Cristina Cunha and Arjan van Laarhoven and Frank L. van de Veerdonk and David L. Williams and J.W.M. van der Meer and Colin Logie and Luke O'neill and Charles A. Dinarello and Niels P. Riksen and Reinout van Crevel and Clary B. Clish and Richard A. Notebaart},
journal = {Cell Metabolism},
year = {2016},
doi = {10.1016/j.cmet.2016.10.008},
}
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