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Extensive weight loss reduces glycan age by altering IgG N-glycosylation

Valentina Greto, Ana Cvetko, Tamara Štambuk, Niall Dempster, Domagoj Kifer, Helena Deriš, Ana Cindrić, Frano Vučković, Mario Falchi, Richard Gillies, Jeremy Tomlinson, Olga Gornik, Bruno Sgromo, Tim D. Spector, Cristina Menni

International Journal of Obesity · 2021 · ▲ 66 citations

Abstract

Abstract Background Obesity, a major global health problem, is associated with increased cardiometabolic morbidity and mortality. Protein glycosylation is a frequent posttranslational modification, highly responsive to inflammation and ageing. The prospect of biological age reduction, by changing glycosylation patterns through metabolic intervention, opens many possibilities. We have investigated whether weight loss interventions affect inflammation- and ageing-associated IgG glycosylation changes, in a longitudinal cohort of bariatric surgery patients. To support potential findings, BMI-related glycosylation changes were monitored in a longitudinal twins cohort. Methods IgG N-glycans were chromatographically profiled in 37 obese patients, subjected to low-calorie diet, followed by bariatric surgery, across multiple timepoints. Similarly, plasma-derived IgG N-glycan traits were longitudinally monitored in 1680 participants from the TwinsUK cohort. Results Low-calorie diet induced a marked decrease in the levels of IgG N-glycans with bisecting GlcNAc, whose higher levels are usually associated with ageing and inflammatory conditions. Bariatric surgery resulted in extensive alterations of the IgG N-glycome that accompanied progressive weight loss during 1-year follow-up. We observed a significant increase in digalactosylated and sialylated glycans, and a substantial decrease in agalactosylated and core fucosylated IgG N-glycans (adjusted p value range 7.38 × 10 −04 –3.94 × 10 −02 ). This IgG N-glycan profile is known to be associated with a younger biological age and reflects an enhanced anti-inflammatory IgG potential. Loss of BMI over a 20 year period in the TwinsUK cohort validated a weight loss-associated agalactosylation decrease (adjusted p value 1.79 × 10 −02 ) and an increase in digalactosylation (adjusted p value 5.85 × 10 −06 ). Conclusions Altogether, these findings highlight that weight loss substantially affects IgG N-glycosylation, resulting in reduced glycan and biological age.

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Provenance

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OpenAlex
DOI
10.1038/s41366-021-00816-3
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2026-07-25 MST

Cite this

APA
Greto, V., Cvetko, A., Štambuk, T., Dempster, N., Kifer, D., Deriš, H., Cindrić, A., Vučković, F., Falchi, M., Gillies, R., Tomlinson, J., Gornik, O., Sgromo, B., Spector, T.D., Menni, C., Geremia, A., Arancibia-Cárcamo, C.V., &amp; Lauc, G. (2021). Extensive weight loss reduces glycan age by altering IgG N-glycosylation. <em>International Journal of Obesity</em>. https://doi.org/10.1038/s41366-021-00816-3
Vancouver
Greto V, Cvetko A, Štambuk T, Dempster N, Kifer D, Deriš H, et al. Extensive weight loss reduces glycan age by altering IgG N-glycosylation. International Journal of Obesity. 2021. doi:10.1038/s41366-021-00816-3.
BibTeX
@article{valentina2021Extens, title = {Extensive weight loss reduces glycan age by altering IgG N-glycosylation}, author = {Valentina Greto and Ana Cvetko and Tamara Štambuk and Niall Dempster and Domagoj Kifer and Helena Deriš and Ana Cindrić and Frano Vučković and Mario Falchi and Richard Gillies and Jeremy Tomlinson and Olga Gornik and Bruno Sgromo and Tim D. Spector and Cristina Menni and Alessandra Geremia and Carolina V. Arancibia-Cárcamo and Gordan Lauc}, journal = {International Journal of Obesity}, year = {2021}, doi = {10.1038/s41366-021-00816-3}, }

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