Vitamin D and Human Health: Lessons from Vitamin D Receptor Null Mice
Витамин D и здоровье человека: уроки, полученные на мышах с нокаутом рецептора витамина D
2008-10-01
SCID: 54.1/r2p8h45s
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CYP27B1VDR-null micecalcium and bone homeostasisvitamin D receptorvitamin D supplementation
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Abstract (AI)
The vitamin D endocrine system is essential for calcium and bone homeostasis. The precise mode of action and the full spectrum of activities of the vitamin D hormone, 1,25-dihydroxyvitamin D [1,25-(OH)(2)D], can now be better evaluated by critical analysis of mice with engineered deletion of the vitamin D receptor (VDR). Absence of a functional VDR or the key activating enzyme, 25-OHD-1alpha-hydroxylase (CYP27B1), in mice creates a bone and growth plate phenotype that mimics humans with the same congenital disease or severe vitamin D deficiency. The intestine is the key target for the VDR because high calcium intake, or selective VDR rescue in the intestine, restores a normal bone and growth plate phenotype. The VDR is nearly ubiquitously expressed, and almost all cells respond to 1,25-(OH)(2)D exposure; about 3% of the mouse or human genome is regulated, directly and/or indirectly, by the vitamin D endocrine system, suggesting a more widespread function. VDR-deficient mice, but not vitamin D- or 1alpha-hydroxylase-deficient mice, and man develop total alopecia, indicating that the function of the VDR and its ligand is not fully overlapping. The immune system of VDR- or vitamin D-deficient mice is grossly normal but shows increased sensitivity to autoimmune diseases such as inflammatory bowel disease or type 1 diabetes after exposure to predisposing factors. VDR-deficient mice do not have a spontaneous increase in cancer but are more prone to oncogene- or chemocarcinogen-induced tumors. They also develop high renin hypertension, cardiac hypertrophy, and increased thrombogenicity. Vitamin D deficiency in humans is associated with increased prevalence of diseases, as predicted by the VDR null phenotype. Prospective vitamin D supplementation studies with multiple noncalcemic endpoints are needed to define the benefits of an optimal vitamin D status.
Key Findings
1
Prospective vitamin D supplementation trials assessing multiple noncalcemic outcomes are needed to determine the health benefits of optimal vitamin D status.
2
The intestine is the critical VDR target for skeletal health, because high calcium intake or intestine-specific VDR rescue restores normal bone and growth-plate development.
3
The vitamin D endocrine system regulates approximately 3% of the mouse or human genome, indicating functions extending beyond calcium and bone homeostasis.
4
VDR deficiency increases susceptibility to autoimmune disease, induced tumors, high-renin hypertension, cardiac hypertrophy, and thrombogenicity, despite largely normal baseline immunity and no spontaneous cancer increase.
5
VDR-deficient mice and humans develop total alopecia, whereas vitamin D- or CYP27B1-deficient organisms do not, demonstrating distinct ligand-independent VDR functions.
6
Vitamin D receptor (VDR) or CYP27B1 deletion in mice reproduces the bone and growth-plate abnormalities seen in humans with corresponding congenital defects or severe vitamin D deficiency.
Research Object
Vitamin D receptor (VDR) null (VDR-deficient) mice
Research Subject
The physiological functions and disease-related phenotypes associated with VDR-mediated vitamin D signaling, including calcium and bone homeostasis, growth, immunity, cancer susceptibility, cardiovascular regulation, and thrombogenicity
Publication Details
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2008-10-01
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