Genetic evidence that the human CYP2R1 enzyme is a key vitamin D 25-hydroxylase
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- 5 May 2004
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 101 (20) , 7711-7715
- https://doi.org/10.1073/pnas.0402490101
Abstract
The synthesis of bioactive vitamin D requires hydroxylation at the 1α and 25 positions by cytochrome P450 enzymes in the kidney and liver, respectively. The mitochondrial enzyme CYP27B1 catalyzes 1α-hydroxylation in the kidney but the identity of the hepatic 25-hydroxylase has remained unclear for >30 years. We previously identified the microsomal CYP2R1 protein as a potential candidate for the liver vitamin D 25-hydroxylase based on the enzyme9s biochemical properties, conservation, and expression pattern. Here, we report a molecular analysis of a patient with low circulating levels of 25-hydroxyvitamin D and classic symptoms of vitamin D deficiency. This individual was found to be homozygous for a transition mutation in exon 2 of the CYP2R1 gene on chromosome 11p15.2. The inherited mutation caused the substitution of a proline for an evolutionarily conserved leucine at amino acid 99 in the CYP2R1 protein and eliminated vitamin D 25-hydroxylase enzyme activity. These data identify CYP2R1 as a biologically relevant vitamin D 25-hydroxylase and reveal the molecular basis of a human genetic disease, selective 25-hydroxyvitamin D deficiency.Keywords
This publication has 46 references indexed in Scilit:
- The Enzymes, Regulation, and Genetics of Bile Acid SynthesisAnnual Review of Biochemistry, 2003
- Genome Scan Among Nigerians Linking Blood Pressure to Chromosomes 2, 3, and 19Hypertension, 2002
- Dietary Phosphorus Transcriptionally Regulates 25-Hydroxyvitamin D-1 -Hydroxylase Gene Expression in the Proximal Renal TubuleEndocrinology, 2002
- Editorial: Vitamin D 1 -Hydroxylase Knockout Mice as a Hereditary Rickets Animal ModelEndocrinology, 2001
- The Molecular Basis of Vitamin D-Dependent Rickets Type I.Endocrine Journal, 2001
- The Apo(a) Gene is the Major Determinant of Variation in Plasma Lp(a) Levels in African AmericansAmerican Journal of Human Genetics, 1997
- A new defect in vitamin D metabolismThe Journal of Pediatrics, 1995
- Unique form of rickets with low serum 25-hydroxyvitamin D in two normally nourished childrenPediatrics International, 1995
- A possible genetic defect in 25-hydroxylation as a cause of ricketsThe Journal of Pediatrics, 1994
- 25‐hydroxylation of 1α‐hydroxyvitamin D3 in vivo and in perfused rat liverFEBS Letters, 1976