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Citations to this article

IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis
Shuai Yan, … , Rasheed Ahmad, Evan D. Rosen
Shuai Yan, … , Rasheed Ahmad, Evan D. Rosen
Published February 11, 2021
Citation Information: J Clin Invest. 2021;131(7):e144888. https://doi.org/10.1172/JCI144888.
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Research Article Metabolism Article has an altmetric score of 3

IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis

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Abstract

Adipose thermogenesis is repressed in obesity, reducing the homeostatic capacity to compensate for chronic overnutrition. Inflammation inhibits adipose thermogenesis, but little is known about how this occurs. Here we showed that the innate immune transcription factor IRF3 is a strong repressor of thermogenic gene expression and oxygen consumption in adipocytes. IRF3 achieved this by driving expression of the ubiquitin-like modifier ISG15, which became covalently attached to glycolytic enzymes, thus reducing their function and decreasing lactate production. Lactate repletion was able to restore thermogenic gene expression, even when the IRF3/ISG15 axis was activated. Mice lacking ISG15 phenocopied mice lacking IRF3 in adipocytes, as both had elevated energy expenditure and were resistant to diet-induced obesity. These studies provide a deep mechanistic understanding of how the chronic inflammatory milieu of adipose tissue in obesity prevents thermogenic compensation for overnutrition.

Authors

Shuai Yan, Manju Kumari, Haopeng Xiao, Christopher Jacobs, Shihab Kochumon, Mark Jedrychowski, Edward Chouchani, Rasheed Ahmad, Evan D. Rosen

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Total citations by year

Year: 2025 2024 2023 2022 2021 Total
Citations: 5 11 13 7 7 43
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article in year 2021 (7)

Title and authors Publication Year
Lactate Fluxes and Plasticity of Adipose Tissues: A Redox Perspective
D Lagarde, Y Jeanson, JC Portais, A Galinier, I Ader, L Casteilla, A Carrière
Frontiers in physiology 2021
BAd-CRISPR: inducible gene knockout in interscapular brown adipose tissue of adult mice
SM Romanelli, KT Lewis, A Nishii, AC Rupp, Z Li, H Mori, RL Schill, BS Learman, CJ Rhodes, OA MacDougald
The Journal of biological chemistry 2021
IL-1β and TNFα Cooperativity in Regulating IL-6 Expression in Adipocytes Depends on CREB Binding and H3K14 Acetylation
A Al-Roub, AA Madhoun, N Akhter, R Thomas, L Miranda, T Jacob, E Al-Ozairi, F Al-Mulla, S Sindhu, R Ahmad
Cells 2021
cGAS‒STING signaling and function in metabolism and kidney diseases
J Bai, F Liu, J Wu
Journal of Molecular Cell Biology 2021
Hepatocyte-derived exosomes from early onset obese mice promote insulin sensitivity through miR-3075
Y Ji, Z Luo, H Gao, FC Reis, G Bandyopadhyay, Z Jin, KA Manda, R Isaac, M Yang, W Fu, W Ying, JM Olefsky
Nature metabolism 2021
Proteomics Mapping of the ISGylation Landscape in Innate Immunity
F Thery, D Eggermont, F Impens
Frontiers in immunology 2021
CHRNA2: a new paradigm in beige thermoregulation and metabolism
Ma Y, Liu S, Jun H, Wu J
Trends in Cell Biology 2021

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