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RNA-sequencing based gene variants observed in patients with hyperlipidemia and premature coronary heart disease: A
Wilanee Dechkhajorn1, Kriengchai Prasongsukarn2, Surachet Benjathummarak3
1Department of Tropical Pathology, Faculty of Tropical Medicine, Mahidol University, Bangkok, 10400, Thailand.
Insights
Genetic variants in six genes, including MAFG and AKAP1, may contribute to premature familial coronary heart disease (FH-CHD) in patients with hyperlipidemia. Further research is needed to validate these findings for risk prediction.
Area of Science:
- Genetics
- Cardiovascular Disease
- Molecular Biology
Background:
- Familial hypercholesterolemia (FH) is a genetic disorder causing high LDL cholesterol.
- FH significantly increases the risk of premature coronary heart disease (FH-CHD).
- Identifying genetic contributors to FH-CHD is crucial for risk assessment.
Purpose of the Study:
- To explore shared gene variants in hyperlipidemia (H), FH, and FH-CHD patients.
- To identify high-impact gene variants potentially linked to premature FH-CHD.
Main Methods:
- Cross-sectional study comparing healthy controls with H, FH, CHD, and FH-CHD patients.
- Next-generation sequencing and RNA-seq transcriptome profiling of whole peripheral blood.
- Analysis of intersected gene variants and their impact on gene function.
Main Results:
- Fifteen intersected gene variants were found between H/FH and FH-CHD groups.
- Six genes (MAFG, AKAP1, TLR5, CHUK, EMC10, PLRG1) showed significant high-impact variants.
- These variants, including frameshift and stop-gain mutations, are predicted to impair gene function and may link to atherogenesis and CHD.
Conclusions:
- Variants in MAFG, AKAP1, TLR5, CHUK, EMC10, and PLRG1 may be associated with premature FH-CHD.
- These gene variants could potentially serve as contributory predictors for FH-CHD risk in hyperlipidemia patients.
- Further functional validation and classification of these genetic variations are recommended.
Abstract:
Familial hypercholesterolemia (FH) is a genetic disorder characterized by markedly elevated low-density lipoprotein (LDL) cholesterol levels, which primarily progresses to premature or familial coronary heart disease (FH-CHD). This cross-sectional study included healthy controls (N) and patients with hyperlipidemia (H), FH, CHD, and FH-CHD. We attempted to explore gene variants shared in H, FH and FH-CHD using next-generation sequencing tool. The RNA-seq transcriptome profiling from the whole peripheral blood (n = 3/group) were analyzed. The results revealed 15 intersected gene variants between the H/FH and FH-CHD groups. Aligning and mapping on the coding regions showed significant high-impact variants in 6 of the 15 genes including MAFG, AKAP1, TLR5, CHUK, EMC10, and PLRG1. The significant high-impact variations included frameshift variants in CHUK and PLRG, stop-gain variation in TLR5 at the last intron, stop-lost variation in EMC10, and splice-acceptor and donor variants in MAFG and AKAP1, respectively. Pathogenicity scoring (ACMG Criteria) interpreted that these variation effects are predicted to lose the gene functions. Based on reference databases without any validation, these gene variations are probably linked to atherogenesis and CHD development. Conclusively, our exploratory observed that MAFG, AKAP1, TLR5, CHUK, EMC10, and PLRG1 variants had higher impacts and might be related to premature CHD development. Further classification and functional validation of these genetic variations should be considered for the feasibility of using these gene variants as contributory predictors of the FH-CHD risk in hyperlipidemia patients.
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