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Single Nucleotide Polymorphisms in the Vitamin D Metabolic Pathway and Their Relationship with High Blood Pressure
Susana Rojo-Tolosa1,2,3, Noelia Márquez-Pete1,3, José María Gálvez-Navas1,2,3,4
1Pharmacogenetics Unit, Pharmacy Service, University Hospital Virgen de las Nieves, Avda. de las Fuerzas Armadas 2, 18004 Granada, Spain.
Insights
High blood pressure (HBP) risk is linked to vitamin D pathway genes. The GC rs7041 polymorphism (T allele) is associated with a significantly lower risk of developing HBP, suggesting its potential as a predictive biomarker.
Area of Science:
- Genetics and Cardiovascular Health
- Nutritional Genomics and Disease Risk
Background:
- High blood pressure (HBP) is a major global risk factor for cardiovascular disease (CVD) and mortality, with current diagnostic and treatment strategies showing deficiencies.
- Vitamin D plays a crucial role in numerous physiological processes and has been implicated in chronic diseases like HBP and CVD, partly due to its influence on the renin-angiotensin-aldosterone system.
Purpose of the Study:
- To investigate the association between single nucleotide polymorphisms (SNPs) in the vitamin D metabolic pathway and the risk of developing high blood pressure (HBP).
- To identify potential genetic biomarkers for predicting HBP risk within the vitamin D pathway.
Main Methods:
- An observational case-control study involving 250 HBP patients and 500 controls from southern Spain (Caucasians).
- Analysis of 13 vitamin D pathway-related SNPs (in CYP27B1, CYP2R1, GC, CYP24A1, VDR) using real-time PCR and TaqMan probes.
- Logistic regression analysis, adjusted for BMI, dyslipidemia, and diabetes, was employed to assess the risk associated with different genotypes and alleles.
Main Results:
- The GC rs7041 TT genotype was significantly associated with a lower risk of HBP compared to the GG genotype (OR = 0.44, p = 0.005).
- This protective association was maintained in dominant (TT + TG vs. GG, OR = 0.69, p = 0.010) and additive (T vs. G, OR = 0.65, p = 0.003) models.
- Haplotype analysis suggested a marginally significant lower risk of HBP associated with specific haplotypes (GACATG) in the vitamin D pathway genes (OR = 0.35, p = 0.054).
Conclusions:
- The rs7041 polymorphism in the GC gene is significantly associated with a reduced risk of developing high blood pressure (HBP).
- This specific GC gene polymorphism may serve as a valuable predictive biomarker for HBP.
- Further research into the role of vitamin D metabolism and its genetic variations in cardiovascular health is warranted.
Abstract:
High blood pressure (HBP) is the leading risk factor for cardiovascular disease (CVD) and all-cause mortality worldwide. The progression of the disease leads to structural and/or functional alterations in various organs and increases cardiovascular risk. Currently, there are significant deficiencies in its diagnosis, treatment, and control. Vitamin D is characterized by its functional versatility and its involvement in countless physiological processes. This has led to the association of vitamin D with many chronic diseases, including HBP and CVD, due to its involvement in the regulation of the renin-angiotensin-aldosterone system. The aim of this study was to evaluate the effect of 13 single nucleotide polymorphisms (SNPs) related to the vitamin D metabolic pathway on the risk of developing HBP. An observational case-control study was performed, including 250 patients diagnosed with HBP and 500 controls from the south of Spain (Caucasians). Genetic polymorphisms in CYP27B1 (rs4646536, rs3782130, rs703842, and rs10877012), CYP2R1 rs10741657, GC rs7041, CYP24A1 (rs6068816, and rs4809957), and VDR (BsmI, Cdx2, FokI, ApaI, and TaqI) were analyzed by real-time PCR using TaqMan probes. Logistic regression analysis, adjusted for body mass index (BMI), dyslipidemia, and diabetes, showed that in the genotypic model, carriers of the GC rs7041 TT genotype were associated with a lower risk of developing HBP than the GG genotype (odds ratio (OR) = 0.44, 95% confidence interval (CI): 0.41-0.77, p = 0.005, TT vs. GG). In the dominant model, this association was maintained; carriers of the T allele showed a lower risk of developing HBP than carriers of the GG genotype (OR = 0.69, 95% CI: 0.47-1.03; TT + TG vs. GG, p = 0.010). Finally, in the additive model, consistent with previous models, the T allele was associated with a lower risk of developing HBP than the G allele (OR = 0.65, 95% CI: 0.40-0.87, p = 0.003, T vs. G). Haplotype analysis revealed that GACATG haplotypes for SNPs rs1544410, rs7975232, rs731236, rs4646536, rs703842, and rs10877012 were associated with a marginally significant lower risk of developing HBP (OR = 0.35, 95% CI: 0.12-1.02, p = 0.054). Several studies suggest that GC 7041 is associated with a lower active isoform of the vitamin D binding protein. In conclusion, the rs7041 polymorphism located in the GC gene was significantly associated with a lower risk of developing HBP. This polymorphism could therefore act as a substantial predictive biomarker of the disease.
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