Vitamin D Hormone Confers Neuroprotection in Parallel with Downregulation of L-Type Calcium Channel Expression in Hippocampal Neurons
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Open Access
- 1 January 2001
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 21 (1) , 98-108
- https://doi.org/10.1523/jneurosci.21-01-00098.2001
Abstract
Although vitamin D hormone (VDH; 1,25-dihydroxyvitamin D3), the active metabolite of vitamin D, is the major Ca2+-regulatory steroid hormone in the periphery, it is not known whether it also modulates Ca2+ homeostasis in brain neurons. Recently, chronic treatment with VDH was reported to protect brain neurons in both aging and animal models of stroke. However, it is unclear whether those actions were attributable to direct effects on brain cells or indirect effects mediated via peripheral pathways. VDH modulates L-type voltage-sensitive Ca2+ channels (L-VSCCs) in peripheral tissues, and an increase in L-VSCCs appears linked to both brain aging and neuronal vulnerability. Therefore, we tested the hypothesis that VDH has direct neuroprotective actions and, in parallel, targets L-VSCCs in hippocampal neurons. Primary rat hippocampal cultures, treated for several days with VDH, exhibited a U-shaped concentration–response curve for neuroprotection against excitotoxic insults: lower concentrations of VDH (1–100 nm) were protective, but higher, nonphysiological concentrations (500–1000 nm) were not. Parallel studies using patch-clamp techniques found a similar U-shaped curve in which L-VSCC current was reduced at lower VDH concentrations and increased at higher (500 nm) concentrations. Real-time PCR studies demonstrated that VDH monotonically downregulated mRNA expression for the α1C and α1D pore-forming subunits of L-VSCCs. However, 500 nm VDH also nonspecifically reduced a range of other mRNA species. Thus, these studies provide the first evidence of (1) direct neuroprotective actions of VDH at relatively low concentrations, and (2) selective downregulation of L-VSCC expression in brain neurons at the same, lower concentrations.Keywords
This publication has 102 references indexed in Scilit:
- Stress and cognitive functionPublished by Elsevier ,2002
- Characterization of vitamin D receptor immunoreactivity in human bone cellsBone, 2000
- Astrocytes protect neurons from neurotoxic injury by serum glutamateGlia, 1998
- Hippocampal Neurodegeneration in AgingScience, 1996
- Increase in Single L-Type Calcium Channels in Hippocampal Neurons During AgingScience, 1996
- Oligonucleotides with fluorescent dyes at opposite ends provide a quenched probe system useful for detecting PCR product and nucleic acid hybridization.Genome Research, 1995
- The Calcium Rationale in Aging and Alzheimer's DiseaseAnnals of the New York Academy of Sciences, 1994
- The Glucocorticoid Hypothesis of Age‐Related Hippocampal Neurodegeneration: Role of Dysregulated Intraneuronal CalciumAnnals of the New York Academy of Sciences, 1994
- Changes in Ca2+-binding proteins in human neurodegenerative disordersTrends in Neurosciences, 1992
- Evidence for calcium-reducing and excitoprotective roles for the calcium-binding protein calbindin-1328k in cultured hippocampal neuronsNeuron, 1991