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Published on: January 28, 2021
Resequencing CETP, LIPC and LIPG genes in Thai subjects with hyperalphalipoproteinemia
Weerapan Khovidhunkit1, Palm Chartyingcharoen, Sathapakorn Siriwong
1Department of Medicine, Chulalongkorn University and King Chulalongkorn Memorial Hospital, Bangkok, Thailand. wkhovid@gmail.com
Insights
Genetic variants in CETP and LIPC genes are linked to high high-density lipoprotein cholesterol (hyperalphalipoproteinemia) in Thai individuals. These findings shed light on the genetic underpinnings of HALP. Keywords: genetic variants, CETP, LIPC, hyperalphalipoproteinemia, HDL cholesterol.
Area of Science:
- Genetics
- Biochemistry
- Cardiovascular Disease
Background:
- Genetic factors contributing to hyperalphalipoproteinemia (HALP), characterized by elevated high-density lipoprotein cholesterol (HDL-C), remain incompletely understood.
- Investigating specific genes involved in lipid metabolism is crucial for elucidating HALP's etiology.
Purpose of the Study:
- To resequence candidate genes CETP, LIPC, and LIPG in Thai subjects with HALP.
- To compare the frequency of sequence variants in these genes between HALP patients and normolipidemic controls.
Main Methods:
- Exome and exon-intron junction sequencing of CETP, LIPC, and LIPG in 64 HALP subjects and 113 controls.
- Identification and comparison of rare and common genetic variants between the two groups.
Main Results:
- Rare mutations (frameshift and missense) in CETP and LIPC were exclusively identified in the HALP group.
- A common CETP variant (p.Asp459Gly) was significantly more frequent in HALP subjects.
- No rare variants were found in the LIPG gene.
Conclusions:
- Genetic variants in CETP and LIPC, including both rare and common types, are more prevalent in Thai individuals with HALP.
- These identified variants in CETP and LIPC likely contribute to the high HDL-C phenotype in this population.
- LIPG does not appear to play a significant role in HALP in this cohort.
Abstract:
Genetic factors associated with hyperalphalipoproteinemia (HALP; or high levels of high-density lipoprotein cholesterol) are incompletely understood. The aim of this study was to resequence 3 candidate genes, CETP, LIPC, and LIPG, which encode cholesteryl ester transfer protein, hepatic lipase, and endothelial lipase, respectively, in Thai subjects with HALP and compare them to normolipidemic controls. Sequence variants of CETP, LIPC, and LIPG were identified by sequencing exons and exon-intron junctions in 64 subjects with high-density lipoprotein cholesterol levels ≥2.59 mmol/L (100 mg/dl) and compared to those of 113 normolipidemic subjects. Two heterozygous frameshift mutations in CETP (p.Leu262ProfsX31 and p.Val411ArgfsX6) and two heterozygous missense mutations in LIPC (p.Gly141Ser and p.Val173Met) were found. One deletion mutation and 3 point mutations in the CETP promoter were also identified. Collectively, these rare mutations were found only in the HALP group but not in the control group (8% vs 0%, p = 0.0056). One common variant of CETP (p.Asp459Gly) was found at a higher frequency in the HALP group (23% vs 4%, p = 0.000074). Altogether, rare variants of CETP or LIPC and/or the common CETP p.Asp459Gly variant were found in 30% of the HALP group and 4% of the controls (p = 0.0000014). No rare variant of LIPG was identified. In conclusion, common and rare genetic variants in CETP and LIPC, but not LIPG, were more commonly found in the Thai HALP group, which could potentially contribute to high high-density lipoprotein cholesterol phenotypes in this population.
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