Does the intracellular ionic concentration or the cell water content (cell volume) determine the activity of TonEBP in NIH3T3 cells?

Research output: Contribution to journalJournal articleResearchpeer-review

Standard

Does the intracellular ionic concentration or the cell water content (cell volume) determine the activity of TonEBP in NIH3T3 cells? / Rødgaard, Tina; Schou, Kenneth; Friis, Martin Barfred; Hoffmann, Else K.

In: American Journal of Physiology: Cell Physiology, Vol. 295, 2008, p. 1528-1534.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Rødgaard, T, Schou, K, Friis, MB & Hoffmann, EK 2008, 'Does the intracellular ionic concentration or the cell water content (cell volume) determine the activity of TonEBP in NIH3T3 cells?', American Journal of Physiology: Cell Physiology, vol. 295, pp. 1528-1534. https://doi.org/10.1152/ajpcell.00081.2008

APA

Rødgaard, T., Schou, K., Friis, M. B., & Hoffmann, E. K. (2008). Does the intracellular ionic concentration or the cell water content (cell volume) determine the activity of TonEBP in NIH3T3 cells? American Journal of Physiology: Cell Physiology, 295, 1528-1534. https://doi.org/10.1152/ajpcell.00081.2008

Vancouver

Rødgaard T, Schou K, Friis MB, Hoffmann EK. Does the intracellular ionic concentration or the cell water content (cell volume) determine the activity of TonEBP in NIH3T3 cells? American Journal of Physiology: Cell Physiology. 2008;295:1528-1534. https://doi.org/10.1152/ajpcell.00081.2008

Author

Rødgaard, Tina ; Schou, Kenneth ; Friis, Martin Barfred ; Hoffmann, Else K. / Does the intracellular ionic concentration or the cell water content (cell volume) determine the activity of TonEBP in NIH3T3 cells?. In: American Journal of Physiology: Cell Physiology. 2008 ; Vol. 295. pp. 1528-1534.

Bibtex

@article{acb15180a0f011dd86a6000ea68e967b,
title = "Does the intracellular ionic concentration or the cell water content (cell volume) determine the activity of TonEBP in NIH3T3 cells?",
abstract = "The transcription factor, tonicity-responsive enhancer binding protein (TonEBP), is involved in the adaptive response against hypertonicity. TonEBP regulates the expression of genes that catalyze the accumulation of osmolytes, and its transcriptional activity is increased by hypertonicity. The goal of the present investigation was to investigate whether cell shrinkage or high intracellular ionic concentration induced the activation of TonEBP. We designed a model system for isotonically shrinking cells over a prolonged period of time. Cells swelled in hypotonic medium and performed a regulatory volume decrease (RVD). Upon return to the original isotonic medium, cells shrank initially followed by a regulatory volume increase (RVI). To maintain cell shrinkage, the RVI process was inhibited as follows: Ethyl-isopropyl-amiloride (EIPA) inhibited the Na(+)/H(+) antiport, Bumetanide inhibited the Na(+)/K(+)/2Cl(-) co-transporter, and Gadolinium inhibited shrinkage-activated Na(+) channels. Cells remained shrunken for at least 4 hours (isotonically shrunken cells). The activity of TonEBP was investigated with a Luciferase assay after isotonic shrinkage and after shrinkage in a high NaCl hypertonic medium. We found that TonEBP was strongly activated after 4 and 16 hours in cells in high NaCl hypertonic medium but not after 4 or 16 hours in isotonically shrunken cells. Cells treated with high NaCl hypertonic medium for 4 hours had significantly higher intracellular concentrations of both K(+) and Na(+) than isotonically shrunken cells. This strongly suggested that an increase in intracellular ionic concentration and not cell shrinkage is involved in TonEBP activation.",
author = "Tina R{\o}dgaard and Kenneth Schou and Friis, {Martin Barfred} and Hoffmann, {Else K}",
note = "KEYWORDS: Cell volume, cell ionic strength, isosmotic shrinkage, NIH3T3 cells.",
year = "2008",
doi = "10.1152/ajpcell.00081.2008",
language = "English",
volume = "295",
pages = "1528--1534",
journal = "American Journal of Physiology: Cell Physiology",
issn = "0363-6143",
publisher = "American Physiological Society",

}

RIS

TY - JOUR

T1 - Does the intracellular ionic concentration or the cell water content (cell volume) determine the activity of TonEBP in NIH3T3 cells?

AU - Rødgaard, Tina

AU - Schou, Kenneth

AU - Friis, Martin Barfred

AU - Hoffmann, Else K

N1 - KEYWORDS: Cell volume, cell ionic strength, isosmotic shrinkage, NIH3T3 cells.

PY - 2008

Y1 - 2008

N2 - The transcription factor, tonicity-responsive enhancer binding protein (TonEBP), is involved in the adaptive response against hypertonicity. TonEBP regulates the expression of genes that catalyze the accumulation of osmolytes, and its transcriptional activity is increased by hypertonicity. The goal of the present investigation was to investigate whether cell shrinkage or high intracellular ionic concentration induced the activation of TonEBP. We designed a model system for isotonically shrinking cells over a prolonged period of time. Cells swelled in hypotonic medium and performed a regulatory volume decrease (RVD). Upon return to the original isotonic medium, cells shrank initially followed by a regulatory volume increase (RVI). To maintain cell shrinkage, the RVI process was inhibited as follows: Ethyl-isopropyl-amiloride (EIPA) inhibited the Na(+)/H(+) antiport, Bumetanide inhibited the Na(+)/K(+)/2Cl(-) co-transporter, and Gadolinium inhibited shrinkage-activated Na(+) channels. Cells remained shrunken for at least 4 hours (isotonically shrunken cells). The activity of TonEBP was investigated with a Luciferase assay after isotonic shrinkage and after shrinkage in a high NaCl hypertonic medium. We found that TonEBP was strongly activated after 4 and 16 hours in cells in high NaCl hypertonic medium but not after 4 or 16 hours in isotonically shrunken cells. Cells treated with high NaCl hypertonic medium for 4 hours had significantly higher intracellular concentrations of both K(+) and Na(+) than isotonically shrunken cells. This strongly suggested that an increase in intracellular ionic concentration and not cell shrinkage is involved in TonEBP activation.

AB - The transcription factor, tonicity-responsive enhancer binding protein (TonEBP), is involved in the adaptive response against hypertonicity. TonEBP regulates the expression of genes that catalyze the accumulation of osmolytes, and its transcriptional activity is increased by hypertonicity. The goal of the present investigation was to investigate whether cell shrinkage or high intracellular ionic concentration induced the activation of TonEBP. We designed a model system for isotonically shrinking cells over a prolonged period of time. Cells swelled in hypotonic medium and performed a regulatory volume decrease (RVD). Upon return to the original isotonic medium, cells shrank initially followed by a regulatory volume increase (RVI). To maintain cell shrinkage, the RVI process was inhibited as follows: Ethyl-isopropyl-amiloride (EIPA) inhibited the Na(+)/H(+) antiport, Bumetanide inhibited the Na(+)/K(+)/2Cl(-) co-transporter, and Gadolinium inhibited shrinkage-activated Na(+) channels. Cells remained shrunken for at least 4 hours (isotonically shrunken cells). The activity of TonEBP was investigated with a Luciferase assay after isotonic shrinkage and after shrinkage in a high NaCl hypertonic medium. We found that TonEBP was strongly activated after 4 and 16 hours in cells in high NaCl hypertonic medium but not after 4 or 16 hours in isotonically shrunken cells. Cells treated with high NaCl hypertonic medium for 4 hours had significantly higher intracellular concentrations of both K(+) and Na(+) than isotonically shrunken cells. This strongly suggested that an increase in intracellular ionic concentration and not cell shrinkage is involved in TonEBP activation.

U2 - 10.1152/ajpcell.00081.2008

DO - 10.1152/ajpcell.00081.2008

M3 - Journal article

C2 - 18842831

VL - 295

SP - 1528

EP - 1534

JO - American Journal of Physiology: Cell Physiology

JF - American Journal of Physiology: Cell Physiology

SN - 0363-6143

ER -

ID: 6768515