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New Insights into Behçet's Syndrome Metabolic Reprogramming: Citrate Pathway Dysregulation
Anna Santarsiero1, Pietro Leccese2, Paolo Convertini1
1Department of Science, University of Basilicata, Potenza, Italy.
Insights
Metabolic reprogramming in Behçet
Area of Science:
- Immunometabolism
- Molecular Biology
Background:
- Behçet's syndrome (BS) research has primarily focused on immunology, with limited understanding of its metabolic alterations.
- Citrate metabolism, involving mitochondrial citrate carrier (SLC25A1) and ATP citrate lyase (ACLY), is crucial for inflammatory mediator production in macrophages.
Purpose of the Study:
- To investigate the expression levels of SLC25A1 and ACLY in patients with Behçet's syndrome.
- To explore the potential role of citrate pathway dysregulation in the pathophysiology of BS.
Main Methods:
- Peripheral blood mononuclear cells (PBMCs) were collected from 39 BS patients and 21 healthy controls.
- Real-time PCR was used to quantify SLC25A1 and ACLY mRNA expression.
- Statistical analysis included the Kruskal-Wallis test and Dunn's multiple comparison test.
Main Results:
- Patients with Behçet's syndrome exhibited significantly higher SLC25A1 and ACLY mRNA levels compared to healthy controls.
- Upregulation of these key citrate pathway enzymes was observed in BS patients.
Conclusions:
- The findings suggest a dysregulation of the citrate pathway in Behçet's syndrome.
- Upregulated SLC25A1 and ACLY indicate that metabolic reprogramming involving citrate is a feature of BS.
Abstract:
To date, a major research effort on Behçet's syndrome (BS) has been concentrated on immunological aspects. Little is known about the metabolic reprogramming in BS. Citrate is an intermediary metabolite synthesized in mitochondria, and when transported into the cytosol by the mitochondrial citrate carrier-SLC25A1-encoded protein-it is cleaved into acetyl-CoA and oxaloacetate by ATP citrate lyase (ACLY). In induced macrophages, mitochondrial citrate is necessary for the production of inflammatory mediators. The aim of our study was to evaluate SLC25A1 and ACLY expression levels in BS patients. Following a power analysis undertaken on few random samples, the number of enrolled patients was set. Thirty-nine consecutive BS patients fulfilling ISG criteria, and 21 healthy controls suitable for age and sex were recruited. BS patients were divided into two groups according to the presence (active) or absence (inactive) of clinical manifestations. Real-time PCR experiments were performed on PBMCs to quantify SLC25A1 and ACLY mRNA levels. Data processing through the Kruskal-Wallis test and Dunn's multiple comparison test as post hoc showed higher SLC25A1 and ACLY mRNA levels in BS patients compared to those in healthy controls. Therefore, SLC25A1 and ACLY upregulation suggests that metabolic reprogramming in BS involves the citrate pathway dysregulation.
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