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Published on: August 19, 2020
Adipocytes harbor a glucosylceramide biosynthesis pathway involved in iNKT cell activation
Maryam Rakhshandehroo1, Robert J van Eijkeren1, Tanit L Gabriel2
1Molecular Cancer Research, Center for Molecular Medicine, University Medical Center Utrecht, Utrecht, the Netherlands.
Background:
Natural killer T (NKT) cells in adipose tissue (AT) contribute to whole body energy homeostasis.
Results:
Inhibition of the glucosylceramide synthesis in adipocytes impairs iNKT cell activity.
Conclusion:
Glucosylceramide biosynthesis pathway is important for endogenous lipid antigen activation of iNKT cells in adipocytes.
Significance:
Unraveling adipocyte-iNKT cell communication may help to fight obesity-induced AT dysfunction. Overproduction and/or accumulation of ceramide and ceramide metabolites, including glucosylceramides, can lead to insulin resistance. However, glucosylceramides also fulfill important physiological functions. They are presented by antigen presenting cells (APC) as endogenous lipid antigens via CD1d to activate a unique lymphocyte subspecies, the CD1d-restricted invariant (i) natural killer T (NKT) cells. Recently, adipocytes have emerged as lipid APC that can activate adipose tissue-resident iNKT cells and thereby contribute to whole body energy homeostasis. Here we investigate the role of the glucosylceramide biosynthesis pathway in the activation of iNKT cells by adipocytes. UDP-glucose ceramide glucosyltransferase (Ugcg), the first rate limiting step in the glucosylceramide biosynthesis pathway, was inhibited via chemical compounds and shRNA knockdown in vivo and in vitro. β-1,4-Galactosyltransferase (B4Galt) 5 and 6, enzymes that convert glucosylceramides into potentially inactive lactosylceramides, were subjected to shRNA knock down. Subsequently, (pre)adipocyte cell lines were tested in co-culture experiments with iNKT cells (IFNγ and IL4 secretion). Inhibition of Ugcg activity shows that it regulates presentation of a considerable fraction of lipid self-antigens in adipocytes. Furthermore, reduced expression levels of either B4Galt5 or -6, indicate that B4Galt5 is dominant in the production of cellular lactosylceramides, but that inhibition of either enzyme results in increased iNKT cell activation. Additionally, in vivo inhibition of Ugcg by the aminosugar AMP-DNM results in decreased iNKT cell effector function in adipose tissue. Inhibition of endogenous glucosylceramide production results in decreased iNKT cells activity and cytokine production, underscoring the role of this biosynthetic pathway in lipid self-antigen presentation by adipocytes.
Insights
The glucosylceramide biosynthesis pathway in adipocytes is crucial for activating invariant natural killer T (iNKT) cells. Inhibiting this pathway impairs iNKT cell function, highlighting its role in energy homeostasis and potential therapeutic targets for obesity.
Area of Science:
- Immunology
- Metabolic Research
- Cell Biology
Background:
- Adipose tissue (AT) resident Natural Killer T (NKT) cells, specifically invariant NKT (iNKT) cells, play a role in whole-body energy homeostasis.
- Adipocytes function as lipid antigen-presenting cells (APCs), activating resident iNKT cells via CD1d presentation.
- Ceramide metabolites, including glucosylceramides, are implicated in insulin resistance but also have physiological roles in immune cell activation.
Purpose of the Study:
- To investigate the role of the glucosylceramide biosynthesis pathway in adipocyte-mediated activation of iNKT cells.
- To determine how inhibiting key enzymes in glucosylceramide synthesis affects iNKT cell activity and cytokine production.
Main Methods:
- Inhibition of UDP-glucose ceramide glucosyltransferase (Ugcg) using chemical compounds and shRNA in vitro and in vivo.
- Knockdown of β-1,4-Galactosyltransferase (B4Galt) 5 and 6 enzymes.
- Co-culture experiments of (pre)adipocytes with iNKT cells to assess cytokine secretion (IFNγ, IL4).
Main Results:
- Inhibition of Ugcg demonstrated its regulation of lipid self-antigen presentation by adipocytes.
- Reduced B4Galt5 or B4Galt6 expression led to increased iNKT cell activation, with B4Galt5 being dominant in lactosylceramide production.
- In vivo inhibition of Ugcg resulted in decreased iNKT cell effector function and cytokine production in adipose tissue.
Conclusions:
- The glucosylceramide biosynthesis pathway is essential for the endogenous lipid antigen activation of iNKT cells by adipocytes.
- Modulating this pathway impacts iNKT cell activity, suggesting its importance in adipocyte-iNKT cell communication.
- Understanding this pathway could offer therapeutic strategies for obesity-induced adipose tissue dysfunction.
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