Abstract

The concentration of intracellular free Ca2+ ([Ca2+]i) was measured in dissociated bovine parathyroid cells using the fluorescent indicator quin-2 or fura-2. Small increases in the concentration of extracellular Ca2+ produced relatively slow, monophasic increases in [Ca2+]i in quin-2-loaded cells, but rapid and transient increases followed by lower, yet sustained (steady-state), [Ca2+]i increases in fura-2-loaded cells. The different patterns of change in [Ca2+]i reported by quin-2 and fura-2 appear to result from the greater intracellular Ca2+-buffering capacity present within quin-2-loaded cells, which tends to damp rapid and transient changes in [Ca2+]i. In fura-2-loaded parathyroid cells, other divalent cations (Mg2+, Sr2+, Ba2+) also evoked transient increases in [Ca2+]i, and their competitive interactions suggest that they all affect Ca2+ transients by acting on a common site. In contrast, divalent cations failed to cause increases in steady-state levels of cytosolic Ca2+. Low concentrations of La3+ (0.5-10 microM) depressed steady-state levels of cytosolic Ca2+ elicited by extracellular Ca2+ but were without effect on transient increases in [Ca2+]i elicited by extracellular Ca2+, Mg2+ or Sr2+, suggesting that increases in the steady-state [Ca2+]i arise from the influx of extracellular Ca2+. Mg2+- and Sr2+-induced cytosolic Ca2+ transients persisted in the absence of extracellular Ca2+ but were abolished by pretreatment with ionomycin. These results show that cytosolic Ca2+ transients arise from the mobilization of cellular Ca2+ from a nonmitochondrial pool. Extracellular divalent cations thus appear to act at some site on the surface of the cell, and this site can be considered a "Ca2+ receptor" which enables the parathyroid cell to detect small changes in the concentration of extracellular Ca2+.

Highlights

  • The concentration of intracellular freeCa2+([Ca2+Ii) lularCa2+,inturn, is theprimary physiological stimulus was measured in dissociated bovine parathyroid cells regulating secretion of parathyroid thyroid hormone (PTH)

  • Divalent cations failed use of fluorescent indicators for cytosolic Ca2+(15, 16) that to cause increases in steady-state levels of cytosolic has allowed the direct demonstration of increases in [Ca2+Ii

  • Extracellular divalent cations appear to acotf thepresentreportthuscentersonthequiteuncertain at some site on the surfaceof the cell, and this sitecan mechanism(s) by which extracellularCa2+actsto cause be considered a uCa2+receptor” which enables the para- changesin [Ca2+Ii.Studiesalongthese lines may provide thyroid cell to detect small changes in the concentra- insights into thevery early events of stimulus-secretion coution of extracellular Ca2+

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Summary

Introduction

The concentration of intracellular freeCa2+([Ca2+Ii) lularCa2+,inturn, is theprimary physiological stimulus was measured in dissociated bovine parathyroid cells regulating secretion of PTH. The changes in [CaZ+lsieen in quin-2-loaded cells were relatively slow and monophasic (Ref. 33 and Fig. 1).In parathyroid cells loaded with fura-2, a qualitatively different pattern emerged: small increases in the concentration of extracellular Ca2+ evoked rapid and transient increases in [Ca2+Itihat were followed by loweyr,et sustained increases in [Ca2+Ii(Fig. 1).Sustained increases in [Ca2+Ii,seen in both quin-2- and fura-2-loaded cells, represent new steady-state levels and persisted for as long as we observed (20-25 min).

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