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Changes in CDKN2A/2B expression associate with T-cell phenotype modulation in atherosclerosis and type 2 diabetes
Ángela VinuÉ1, Sergio MartÍnez-HervÁs2, Andrea Herrero-Cervera1
1Institute of Health Research-INCLIVA, Valencia, Spain.
Abstract:
Previous studies indicate a role of CDKN2A/2B/2BAS genes in atherosclerosis and type 2 diabetes mellitus (T2DM). Progression of these diseases is accompanied by T-cell imbalance and chronic inflammation. Our main objective was to investigate a potential association between CDKN2A/2B/2BAS gene expression and T cell phenotype in T2DM and coronary artery disease (CAD) in humans, and to explore the therapeutic potential of these genes to restore immune cell homeostasis and disease progression. Reduced mRNA levels of CDKN2A (p16Ink4a), CDKN2B (p15Ink4b), and CDKN2BAS were observed in human T2DM and T2DM-CAD subjects compared with controls. Protein levels of p16Ink4a and p15Ink4b were also diminished in T2DM-CAD patients while CDK4 levels, the main target of p16Ink4a and p15Ink4b, were augmented in T2DM and T2DM-CAD subjects. Both patient groups displayed higher activated CD3+CD69+ T cells and proatherogenic CD14++CD16+ monocytes, while CD4+CD25+CD127 regulatory T (Treg cells) cells were decreased. Treatment of primary human lymphocytes with PD0332991, a p16Ink4a/p15Ink4b mimetic drug and a proven CDK4 inhibitor, increased Treg cells and the levels of activated transcription factor phosphoSTAT5. In vivo PD0332991 treatment of atherosclerotic apoE-/- mice and insulin resistant apoE-/-Irs2+/- mice augmented Foxp3-expressing Treg cells and decreased lesion size. Thus, atherosclerosis complications in T2DM associate with altered immune cell homeostasis, diminished CDKN2A/2B/2BAS expression, and increased CDK4 levels. The present study also suggests that the treatment with drugs that mimic CDKN2A/2B genes could potential be considered as a promising therapy to delay atherosclerosis.
Insights
Reduced expression of CDKN2A/2B/2BAS genes in type 2 diabetes mellitus (T2DM) and coronary artery disease (CAD) correlates with immune cell imbalance. Mimicking these genes with drugs may offer a promising therapy to delay atherosclerosis.
Area of Science:
- Immunology
- Genetics
- Cardiovascular Disease
Background:
- Type 2 Diabetes Mellitus (T2DM) and Coronary Artery Disease (CAD) are linked to T-cell imbalance and chronic inflammation.
- CDKN2A/2B/2BAS genes have been previously associated with atherosclerosis and T2DM.
Purpose of the Study:
- To investigate the association between CDKN2A/2B/2BAS gene expression and T-cell phenotype in T2DM and CAD.
- To explore the therapeutic potential of these genes in restoring immune homeostasis and mitigating disease progression.
Main Methods:
- Gene expression analysis (mRNA and protein) of CDKN2A, CDKN2B, CDKN2BAS, and CDK4 in human T2DM and T2DM-CAD patients.
- Flow cytometry to assess T-cell phenotypes (activated T cells, regulatory T cells) and monocyte populations.
- In vitro treatment of human lymphocytes with a CDK4 inhibitor (PD0332991).
- In vivo treatment of atherosclerotic and insulin-resistant mouse models with PD0332991.
Main Results:
- Reduced mRNA and protein levels of CDKN2A (p16Ink4a) and CDKN2B (p15Ink4b) were observed in T2DM and T2DM-CAD subjects.
- Increased CDK4 levels, higher activated T cells and proatherogenic monocytes, and decreased regulatory T (Treg) cells were found in patients.
- PD0332991 treatment increased Treg cells and activated transcription factor phosphoSTAT5 in vitro.
- In vivo PD0332991 treatment augmented Treg cells and reduced atherosclerotic lesion size in mice.
Conclusions:
- Atherosclerosis complications in T2DM are associated with immune cell dysregulation, diminished CDKN2A/2B/2BAS expression, and elevated CDK4 levels.
- Therapies that mimic CDKN2A/2B genes, such as CDK4 inhibitors, show potential for delaying atherosclerosis by restoring immune homeostasis.
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