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Citations to this article

Pyk2 activation is integral to acid stimulation of sodium/hydrogen exchanger 3
Shaoying Li, … , Patricia A. Preisig, Robert J. Alpern
Shaoying Li, … , Patricia A. Preisig, Robert J. Alpern
Published December 15, 2004
Citation Information: J Clin Invest. 2004;114(12):1782-1789. https://doi.org/10.1172/JCI18046.
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Article Cell biology

Pyk2 activation is integral to acid stimulation of sodium/hydrogen exchanger 3

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Abstract

The present study examines the role of Pyk2 in acid regulation of sodium/hydrogen exchanger 3 (NHE3) activity in OKP cells, a kidney proximal tubule epithelial cell line. Incubation of OKP cells in acid media caused a transient increase in Pyk2 phosphorylation that peaked at 30 seconds and increased Pyk2/c-Src binding at 90 seconds. Pyk2 isolated by immunoprecipitation and studied in a cell-free system was activated and phosphorylated at acidic pH. Acid activation of Pyk2 (a) was specific for Pyk2 in that acid did not activate focal adhesion kinase, (b) required calcium, and (c) was associated with increased affinity for ATP. Transfection of OKP cells with dominant-negative pyk2K457A or small interfering pyk2 duplex RNA blocked acid activation of NHE3, while neither had an effect on glucocorticoid activation of NHE3. In addition, pyk2K457A blocked acid activation of c-Src kinase, which is also required for acid regulation of NHE3. The present results demonstrate that Pyk2 is directly activated by acidic pH and that Pyk2 activation is required for acid activation of c-Src kinase and NHE3. Given that partially purified Pyk2 can be activated by acid in a cell-free system, Pyk2 may serve as the pH sensor that initiates the acid-regulated signaling cascade involved in NHE3 regulation.

Authors

Shaoying Li, Soichiro Sato, Xiaojing Yang, Patricia A. Preisig, Robert J. Alpern

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Total citations by year

Year: 2024 2023 2022 2021 2020 2019 2018 2016 2014 2013 2012 2011 2010 2009 2008 2007 2006 2005 2004 Total
Citations: 2 2 3 3 1 2 2 1 2 7 3 4 4 5 2 3 1 1 1 49
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Citations to this article (49)

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Acid-sensing ion channels and downstream signalling in cancer cells: is there a mechanistic link?
Gründer S, Vanek J, Pissas KP
2024
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Bouyer PG, Salameh AI, Zhou Y, Kolba TN, Boron WF
Frontiers in physiology 2024
Inhibition of Pyk2 improves Cx43 intercalated disc localization, infarct size, and cardiac function in rats with heart failure
Zheng L, Spagnol G, Gandhi DR, Sharma K, Kumar V, Patel KP, Sorgen PL
Circulation. Heart failure 2023
How protons pave the way to aggressive cancers.
Swietach P, Boedtkjer E, Pedersen SF
Nature reviews. Cancer 2023
Kidney metabolism and acid-base control: back to the basics.
Imenez Silva PH, Mohebbi N
2022
Physiological relevance of proton-activated GPCRs.
Imenez Silva PH, Wagner CA
2022
Activated PyK2 and Its Associated Molecules Transduce Cellular Signaling from the Cancerous Milieu for Cancer Metastasis.
Lee D, Hong JH
International journal of molecular sciences 2022
The Non-receptor Tyrosine Kinase Pyk2 in Brain Function and Neurological and Psychiatric Diseases
B de Pins, T Mendes, A Giralt, JA Girault
Frontiers in synaptic neuroscience 2021
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Ran L, Yan T, Zhang Y, Niu Z, Kan Z, Song Z
Cell cycle (Georgetown, Tex.) 2021
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Pflügers Archiv - European Journal of Physiology 2012
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