Deletion of the Murine Ortholog of the Human 9p21.3 Locus Leads to Insulin Resistance and Obesity in Hypercholesterolemic Mice.
Sanna KettunenTuisku SuorantaSadegh BeikverdiMinja HeikkiläAnna SlitaIida RätyElias Ylä-HerttualaKatariina ÖörniAnna-Kaisa RuotsalainenSuo Ctc Bladder CommitteePublished in: Cells (2024)
The 9p21.3 genomic locus is a hot spot for disease-associated single-nucleotide polymorphisms (SNPs), and its strongest associations are with coronary artery disease (CAD). The disease-associated SNPs are located within the sequence of a long noncoding RNA ANRIL, which potentially contributes to atherogenesis by regulating vascular cell stress and proliferation, but also affects pancreatic β-cell proliferation. Altered expression of a neighboring gene, CDKN2B , has been also recognized to correlate with obesity and hepatic steatosis in people carrying the risk SNPs. In the present study, we investigated the impact of 9p21.3 on obesity accompanied by hyperlipidemia in mice carrying a deletion of the murine ortholog for the 9p21.3 (Chr4 Δ70/Δ70 ) risk locus in hyperlipidemic Ldlr -/- ApoB 100/100 background. The Chr4 Δ70/Δ70 mice showed decreased mRNA expression of insulin receptors in white adipose tissue already at a young age, which developed into insulin resistance and obesity by aging. In addition, the Sirt1-Ppargc1a-Ucp2 pathway was downregulated together with the expression of Cdkn2b, specifically in the white adipose tissue in Chr4 Δ70/Δ70 mice. These results suggest that the 9p21.3 locus, ANRIL lncRNA, and their murine orthologues may regulate the key energy metabolism pathways in a white adipose tissue-specific manner in the presence of hypercholesterolemia, thus contributing to the pathogenesis of metabolic syndrome.
Keyphrases
- insulin resistance
- high fat diet induced
- adipose tissue
- metabolic syndrome
- high fat diet
- coronary artery disease
- type diabetes
- long noncoding rna
- polycystic ovary syndrome
- skeletal muscle
- genome wide
- cell proliferation
- poor prognosis
- glycemic control
- endothelial cells
- cardiovascular events
- long non coding rna
- genome wide association study
- cardiovascular disease
- dna methylation
- single cell
- copy number
- weight loss
- coronary artery bypass grafting
- gene expression
- ischemia reperfusion injury
- bone marrow
- cell cycle
- percutaneous coronary intervention
- body mass index
- induced pluripotent stem cells
- heat stress
- amino acid
- atrial fibrillation
- atomic force microscopy
- acute coronary syndrome