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.

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