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Stretch-Induced Activation of Pannexin 1 Channels Can Be Prevented by PKA-Dependent Phosphorylation

Authors :
Rosalba Escamilla
Fernando D. González-Nilo
Agustín Martínez
Paola Fernández
Yorley Duarte
Nicolás Palacios-Prado
Juan C. Sáez
Ximena López
Source :
International Journal of Molecular Sciences, Vol 21, Iss 9180, p 9180 (2020), International Journal of Molecular Sciences, Volume 21, Issue 23
Publication Year :
2020
Publisher :
MDPI AG, 2020.

Abstract

Pannexin 1 channels located in the cell membrane are permeable to ions, metabolites, and signaling molecules. While the activity of these channels is known to be modulated by phosphorylation on T198, T308, and S206, the possible involvement of other putative phosphorylation sites remains unknown. Here, we describe that the activity of Panx1 channels induced by mechanical stretch is reduced by adenosine via a PKA-dependent pathway. The mechanical stretch-induced activity&mdash<br />measured by changes in DAPI uptake&mdash<br />of Panx1 channels expressed in HeLa cell transfectants was inhibited by adenosine or cAMP analogs that permeate the cell membrane. Moreover, inhibition of PKA but not PKC, p38 MAPK, Akt, or PKG prevented the effects of cAMP analogs, suggesting the involvement of Panx1 phosphorylation by PKA. Accordingly, alanine substitution of T302 or S328, two putative PKA phosphorylation sites, prevented the inhibitory effect of cAMP analogs. Moreover, phosphomimetic mutation of either T302 or S328 to aspartate prevented the mechanical stretch-induced activation of Panx1 channels. A molecular dynamics simulation revealed that T302 and S328 are located in the water&ndash<br />lipid interphase near the lateral tunnel of the intracellular region, suggesting that their phosphorylation could promote conformational changes in lateral tunnels. Thus, Panx1 phosphorylation via PKA could be modulated by G protein-coupled receptors associated with the Gs subunit.

Details

Language :
English
ISSN :
16616596 and 14220067
Volume :
21
Issue :
9180
Database :
OpenAIRE
Journal :
International Journal of Molecular Sciences
Accession number :
edsair.doi.dedup.....45e4c8e8fcef2b327ee1a9a94e4bfe42