Sequential Activation of Raf-1 Kinase, Mitogen-activated Protein (MAP) Kinase Kinase, MAP Kinase, and S6 Kinase by Hyperosmolality in Renal Cells
Overview
Affiliations
In the renal medulla during antidiuresis, the extracellular fluid becomes hyperosmotic. Madin-Darby canine kidney (MDCK) epithelial cells adapt in hyperosmotic conditions and serve as a useful tissue culture model for cellular responses to hyperosmolality. We demonstrate that hyperosmolality stimulates phospholipase C, Raf-1 kinase mitogen-activated protein (MAP) kinase kinase, MAP kinase, and S6 kinase activities and that it increases phosphorylation of Raf-1 kinase, and p42 MAP kinase in MDCK cells. Stimulation of these kinases is osmolality-dependent (from 300 to 600 mosm/kg H2O). The time course of activation is sequential; the peak stimulation for Raf-1 kinase is at 5 min, at 10 min for MAP kinase kinase and MAP kinase, and at 20 min for S6 kinase. The activation of Raf-1 kinase and MAP kinase is inhibited by phorbol 12-myristate 13-acetate pretreatment in the presence of calphostin C or H-7. Tyrosine kinase inhibitors (genistein, herbimycin) do not significantly suppress hyperosmolality-induced MAP kinase activity. The increase of Ins-1,4,5-P3 levels by hyperosmolality suggests that activation of these kinases is mediated at least partially via activation of phospholipase C. Thus, hyperosmolality stimulates the serine/threonine kinases, Raf-1 kinase, MAP kinase kinase, MAP kinase, and S6 kinase, via predominantly protein kinase C-dependent, tyrosine kinase-independent pathways in MDCK cells.
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Parker M, Nikonova A, Sun D, Golemis E Cell Signal. 2019; 67:109497.
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Capolongo G, Suzumoto Y, DAcierno M, Simeoni M, Capasso G, Zacchia M Int J Mol Sci. 2019; 20(17).
PMID: 31450703 PMC: 6747339. DOI: 10.3390/ijms20174153.
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Plescher M, Teleman A, Demetriades C Sci Rep. 2015; 5:13828.
PMID: 26345496 PMC: 4642562. DOI: 10.1038/srep13828.
Matsumoto T, Urushido M, Ide H, Ishihara M, Hamada-Ode K, Shimamura Y PLoS One. 2015; 10(5):e0126229.
PMID: 25962073 PMC: 4427334. DOI: 10.1371/journal.pone.0126229.