Genes (Nov 2022)

Vitamin D Receptor (<i>VDR</i>) Genetic Variants: Relationship of <i>FokI</i> Genotypes with <i>VDR</i> Expression and Clinical Disease Activity in Systemic Lupus Erythematosus Patients

  • Mónica R. Meza-Meza,
  • Barbara Vizmanos,
  • Melissa Rivera-Escoto,
  • Adolfo I. Ruiz-Ballesteros,
  • Karen Pesqueda-Cendejas,
  • Isela Parra-Rojas,
  • Margarita Montoya-Buelna,
  • Sonia Luquín,
  • Bertha Campos-López,
  • Paulina E. Mora-García,
  • Sergio Cerpa-Cruz,
  • Ulises De la Cruz-Mosso

DOI
https://doi.org/10.3390/genes13112016
Journal volume & issue
Vol. 13, no. 11
p. 2016

Abstract

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Vitamin D (VD) deficiency is more frequent in systemic lupus erythematosus (SLE) patients than in control subjects (CS); genetic variants in the VD receptor (VDR) could contribute to the clinical disease activity. This study was aimed to determine the association of the VDR variants FokI (rs2228570), BsmI (rs1544410), ApaI (rs7975232), and TaqI (rs731236) with susceptibility to the disease, VD status, VDR mRNA expression, and clinical disease activity in SLE patients. A cross-sectional study was conducted in 194 SLE and 196 CS Mexican women. Immunoassays quantified serum calcidiol and calcitriol. Genotyping was performed by allelic discrimination assays and mRNA VDR expression by qPCR. The FokI variant was not in linkage disequilibrium with BsmI, ApaI, and TaqI VDR variants. SLE patient carriers of the TT FokI genotype showed higher clinical disease activity scores. Notably, the mRNA VDR expression was higher in SLE patients vs. CS, in active vs. inactive SLE patients, and in participants of both study groups with vitamin D deficiency, higher calcitriol levels, and TT FokI genotype carriers. In conclusion, the TT FokI VDR genotype was related to high VDR expression and clinical disease activity in systemic lupus erythematosus patients.

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