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Citations to this article

Erythropoietin stimulates a rise in intracellular free calcium concentration in single early human erythroid precursors.
B A Miller, … , J J Botti, J Y Cheung
B A Miller, … , J J Botti, J Y Cheung
Published July 1, 1988
Citation Information: J Clin Invest. 1988;82(1):309-315. https://doi.org/10.1172/JCI113588.
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Research Article Article has an altmetric score of 3

Erythropoietin stimulates a rise in intracellular free calcium concentration in single early human erythroid precursors.

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Abstract

Erythropoietin and granulocyte-macrophage colony-stimulating factor (GM-CSF) stimulate the differentiation and proliferation of erythroid cells. To determine the cellular mechanism of action of these growth factors, we measured changes in intracellular free calcium concentration [( Cac]) in single human erythroid precursors in response to recombinant erythropoietin and GM-CSF. [Cac] in immature erythroblasts derived from cultured human cord blood erythroid progenitors was measured with fluorescence microscopy digital video imaging. When stimulated with erythropoietin, [Cac] in the majority of erythroblasts increased within 3 min, peaked at 5 min, and returned toward baseline at 10 min. The percentage of cells that responded to erythropoietin stimulation increased in a dose-dependent manner. Additional stimulation with GM-CSF in cells previously exposed to erythropoietin resulted in a second [Cac] increase. Immature erythroblasts treated with GM-CSF followed by erythropoietin responded similarly to each factor with a rise in [Cac]. The source of transient calcium is intracellular since erythroblasts were incubated in medium devoid of extracellular calcium. Our observations suggest that changes in [Cac] may be an intracellular signal that mediates the proliferative/differentiating effect of hematopoietic growth factors.

Authors

B A Miller, R C Scaduto Jr, D L Tillotson, J J Botti, J Y Cheung

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Citations to this article (57)

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The role of genetic polymorphisms in STIM1 and ORAI1 for erythropoietin resistance in patients with renal failure
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Medicine 2021
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AE Berbari, G Mancia
2018
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E Eraslan, A Tanyeli, E Polat, E Polat
Journal of Cellular Physiology 2018
Differential effect of erythropoietin and carbamylated erythropoietin on endothelial cell migration
RE Maltaneri, ME Chamorro, A Schiappacasse, AB Nesse, DC Vittori
The International Journal of Biochemistry & Cell Biology 2017
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Acta physiologica (Oxford, England) 2016
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I Hirschler-Laszkiewicz, W Zhang, K Keefer, K Conrad, Q Tong, S Chen, S Bronson, JY Cheung, BA Miller
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Insights into the Function of the Unstructured N-Terminal Domain of Proteins 4.1R and 4.1G in Erythropoiesis
W Nunomura, P Gascard, Y Takakuwa
International Journal of Cell Biology 2011
The Transient Receptor Potential (TRP) Channel TRPC3 TRP Domain and AMP-activated Protein Kinase Binding Site Are Required for TRPC3 Activation by Erythropoietin
I Hirschler-Laszkiewicz, Q Tong, K Waybill, K Conrad, K Keefer, W Zhang, S Chen, JY Cheung, BA Miller
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The Journal of biological chemistry 2008
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I Hirschler-Laszkiewicz, Q Tong, K Conrad, W Zhang, WW Flint, AJ Barber, DL Barber, JY Cheung, BA Miller
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Identification of an N-terminal TRPC2 splice variant which inhibits calcium influx
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The Journal of biological chemistry 2000
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L Soldati, D Adamo, S Zerbi, A Caumo, R Spaventa, G Bianchi, G Vezzoli
Kidney International 1999
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Current Problems in Pediatrics 1999
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