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June 1, 1991AJP Cell Physiology34 citations

Stimulation of Ca2+ influx by endothelin-1 is subject to negative feedback by elevated intracellular Ca2+

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LMLeslie L. MuldoonHEHervé EnslenKRKarin Rodland

Structured PICO

P
Population
Serum-deprived quiescent Rat-1 cells
I
Intervention
Endothelin-1 (ET-1) at low (<10^-9 M) and high (>10^-9 M) concentrations
O
Outcome
Ca2+ influx and intracellular Ca2+ levelssurrogate

ET-1 modulates cellular responses through a dual mechanism where low concentrations promote Ca2+ influx and high concentrations mobilize intracellular Ca2+, with elevated intracellular Ca2+ acting as a negative feedback.

Abstract

Endothelin-1 (ET-1) has been shown to require Ca2+ influx for activation of vascular smooth muscle in vivo, but in vitro models show that ET-1 mobilizes intracellular Ca2+ and is independent of extracellular Ca2+. We present data that suggest ET-1 modulates cellular responses through a dual mechanism involving both phosphatidylinositol turnover and Ca2+ channel activation. Addition of low concentrations of ET-1 (less than 10(-9) M) to serum-deprived quiescent Rat-1 cells stimulated Ca2+ influx while having little effect on diacylglycerol (DG) release or intracellular Ca2+ levels. In contrast, higher concentrations of ET-1 (greater than 10(-9) M) stimulated intracellular Ca2+ transients and release of inositol trisphosphate (IP3) and DG but did not activate Ca2+ uptake. Stimulation of Ca2+ influx at low ET-1 could not be accounted for by depletion of intracellular IP3-sensitive pools. Neither the stimulation of Ca2+ influx at low ET-1 nor the inhibitory actions of high ET-1 could be mimicked by the activation of protein kinase C. We tested the hypothesis that elevated intracellular Ca2+ was inhibitory for Ca2+ influx. When intracellular Ca2+ transients were maintained below approximately 165 nM by chelation with BAPTA or BAPTA derivatives with altered affinity for Ca2+, Ca2+ influx was stimulated over the entire range of ET-1 concentrations. In addition, experimentally elevating intracellular Ca2+ levels with the tumor promoter thapsigargin abolished ET-1-stimulated Ca2+ influx. These data suggest that the biological consequences of ET-1 release may be determined by local concentration differences. Thus in vascular smooth muscle cells ET-1 may act either to mobilize intracellular Ca2+ or to promote Ca2+ influx, depending on the distance from the endothelial cell source in the vascular wall. The activation of different processes by low and high ET-1 concentrations may determine the physiological response to ET-1 stimulation in vivo.

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Cite This Study

Muldoon et al. (1991) studied this question.

synapsesocial.com/papers/6a795b8602ab7a73dd024e12https://doi.org/10.1152/ajpcell.1991.260.6.c1273
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Also Consider

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

  1. 1Intracellular ramification of endothelin signal1991 · 54 citations
  2. 2The Mechanism of Action of Endothelin-1 as Compared with Other Agonists in Vascular Smooth Muscle1989 · 57 citations
  3. 3Mobilization of intracellular Ca<sup>2+</sup>by endothelin-1 in rat intrapulmonary arterial smooth muscle cells2000 · 52 citations
  4. 4Endothelin-1 enhances calcium entry through T-type calcium channels in cultured neonatal rat ventricular myocytes.1992 · 135 citations
  5. 5Endothelin-1 Stimulates Phosphatidylinositol Hydrolysis and Calcium Uptake in Isolated Canine Coronary Arteries1989 · 43 citations