Multi-omics correlates of insulin resistance and circadian parameters mapped directly from human serum
- PMID: 39205434
- DOI: 10.1111/ejn.16486
Multi-omics correlates of insulin resistance and circadian parameters mapped directly from human serum
Abstract
While it is generally known that metabolic disorders and circadian dysfunction are intertwined, how the two systems affect each other is not well understood, nor are the genetic factors that might exacerbate this pathological interaction. Blood chemistry is profoundly changed in metabolic disorders, and we have previously shown that serum factors change cellular clock properties. To investigate if circulating factors altered in metabolic disorders have circadian modifying effects, and whether these effects are of genetic origin, we measured circadian rhythms in U2OS cell in the presence of serum collected from diabetic, obese or control subjects. We observed that circadian period lengthening in U2OS cells was associated with serum chemistry that is characteristic of insulin resistance. Characterizing the genetic variants that altered circadian period length by genome-wide association analysis, we found that one of the top variants mapped to the E3 ubiquitin ligase MARCH1 involved in insulin sensitivity. Confirming our data, the serum circadian modifying variants were also enriched in type 2 diabetes and chronotype variants identified in the UK Biobank cohort. Finally, to identify serum factors that might be involved in period lengthening, we performed detailed metabolomics and found that the circadian modifying variants are particularly associated with branched chain amino acids, whose levels are known to correlate with diabetes and insulin resistance. Overall, our multi-omics data showed comprehensively that systemic factors serve as a path through which metabolic disorders influence circadian system, and these can be examined in human populations directly by simple cellular assays in common cultured cells.
Keywords: GWAS; circadian rhythms; insulin resistance; obesity and type 2 diabetes; serum metabolomics.
© 2024 The Author(s). European Journal of Neuroscience published by Federation of European Neuroscience Societies and John Wiley & Sons Ltd.
References
REFERENCES
-
- Alarcon, C., Wicksteed, B., Prentki, M., Corkey, B. E., & Rhodes, C. J. (2002). Succinate is a preferential metabolic stimulus‐coupling signal for glucose‐induced proinsulin biosynthesis translation. Diabetes, 51, 2496–2504. https://doi.org/10.2337/diabetes.51.8.2496
-
- Arany, Z., & Neinast, M. (2018). Branched chain amino acids in metabolic disease. Current Diabetes Reports, 18, 76. https://doi.org/10.1007/s11892-018-1048-7
-
- Association, A. D. (2020). 2. Classification and diagnosis of diabetes: Standards of medical Care in Diabetes—2021. Diabetes Care, 44, S15–S33. https://doi.org/10.2337/dc21-S002
-
- Balducci, S., Sacchetti, M., Haxhi, J., Orlando, G., D'Errico, V., Fallucca, S., Menini, S., & Pugliese, G. (2014). Platelet mean volume, distribution width, and count in type 2 diabetes, impaired fasting glucose, and metabolic syndrome: A meta‐analysis. Diabetes/Metabolism Research and Reviews, 32, 13–23. https://doi.org/10.1002/dmrr.2514
-
- Bhagwandin, C., Ashbeck, E. L., Whalen, M., Bandola‐Simon, J., Roche, P. A., Szajman, A., Truong, S. M., Wertheim, B. C., Klimentidis, Y. C., Ishido, S., Renquist, B. J., & Lybarger, L. (2018). The E3 ubiquitin ligase MARCH1 regulates glucose‐tolerance and lipid storage in a sex‐specific manner. PLoS ONE, 13, e0204898. https://doi.org/10.1371/journal.pone.0204898
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- Novartis Stiftung für Medizinisch-Biologische Forschung
- Fondation ISREC
- Vontobel-Stiftung
- 310030-184708/Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
- 31003A_166700/1/Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
- CRSII3_160741/Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
- Fondation Leenaards
- Gerthruda-Meissner Foundation
- Vontobel Foundation
- Olga Mayenfisch Foundation
- Novartis Foundation for Medical-Biological Research
- EFSD/Novonordisk Programme for Diabetes Research in Europe
- Leenaards Foundation
- Gerthrude von Meissner Foundation
- Fondation Ernst et Lucie Schmidheiny
- Jubiläumsstiftung Swiss Life Foundation
- Velux Foundation
- Swiss Cancer League
- ISREC Foundation
- Young Independent Investigator Grant SGED/SSED
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