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December 1, 1989Journal of Biological Chemistry243 citationsOpen Access

Vitamin D3 Metabolites Modulate Dihydropyridine-sensitive Calcium Currents in Clonal Rat Osteosarcoma Cells

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JCJ.M. CaffreyMFMary C. Farach‐Carson

Structured PICO

P
Population
Rat osteosarcoma cell line ROS 17/2.8
I
Intervention
Vitamin D3 metabolites (1,25-(OH)2-vitamin D3 at 0.1-10 nM, 25-(OH)-D3, and 24,25-(OH)2-D3)
C
Comparator
Resting cells / baseline
O
Outcome
Modulation of dihydropyridine-sensitive L-type calcium currents and 45Ca2+ influxsurrogate

Vitamin D3 metabolites acutely modulate L-type calcium channel function in osteosarcoma cells, exhibiting biphasic effects depending on concentration.

Abstract

A slowly inactivating inward calcium current was identified in the rat osteosarcoma cell line ROS 17/2.8 using a combination of ion flux and electrophysiological techniques. Voltage dependence, dihydropyridine sensitivity, divalent cation selectivity, and single channel properties identified this current as a high threshold, "L-type" calcium current. Ion flux experiments using 45Ca2+ confirmed that calcium uptake through these channel represents a major pathway for calcium entry into osteosarcoma cells. In resting cells, i.e. at negative membrane potentials, stimulation of both calcium current and rapid 45Ca2+ influx could be elicited by concentrations of 1,25-(OH)2-vitamin D3 between 0.1 and 3 nM. At these concentrations, 1,25-(OH)2-vitamin D3 shifted the threshold for activation of inward calcium current to more negative potentials. At higher concentrations (5-10 nM), inhibitory effects became predominant. These opposing effects are functionally similar to those of the dihydropyridine BAY K 8644. Other vitamin D3 metabolites (25-(OH)-D3 and 24,25-(OH)2-D3) exhibited less potent stimulatory effects and greater inhibition of calcium current than 1,25-(OH)2-D3. These results suggest that (i) vitamin D3 acts as a potent modulator of calcium channel function in osteosarcoma cells, and (ii) intracellular Ca2+-dependent signaling processes may be affected acutely by physiological concentrations of vitamin D3 metabolites.

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Cite This Study

Caffrey et al. (1989) studied this question.

synapsesocial.com/papers/6a20908c6832c8bccb4d1e30https://doi.org/10.1016/s0021-9258(19)47057-9
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Further analysis of spontaneous membrane potential activity and the hyperpolarizing response to parathyroid hormone in osteoblastlike cells1987 · 44 citations
  2. 2Evidence That 1,25-Dihydroxyvitamin D3Is the Physiologically Active Metabolite of Vitamin D3*1985 · 158 citations
  3. 3Studies on Ca channels in intact cardiac cells: voltage-dependent effects and cooperative interactions of dihydropyridine enantiomers.1986 · 219 citations
  4. 4Involvement of 1,25-dihydroxyvitamin D3 in regulating myocardial calcium metabolism: Physiological and pathological actions1988 · 21 citations
  5. 5Parathyroid hormone-activated calcium channels in an osteoblast-like clonal osteosarcoma cell line. cAMP-dependent and cAMP-independent calcium channels.1987 · 278 citations