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Constitutive SRC-mediated phosphorylation of pannexin 1 at tyrosine 198 occurs at the plasma membrane.

Authors :
DeLalio LJ
Billaud M
Ruddiman CA
Johnstone SR
Butcher JT
Wolpe AG
Jin X
Keller TCS 4th
Keller AS
Rivière T
Good ME
Best AK
Lohman AW
Swayne LA
Penuela S
Thompson RJ
Lampe PD
Yeager M
Isakson BE
Source :
The Journal of biological chemistry [J Biol Chem] 2019 Apr 26; Vol. 294 (17), pp. 6940-6956. Date of Electronic Publication: 2019 Feb 27.
Publication Year :
2019

Abstract

Pannexin 1 (PANX1)-mediated ATP release in vascular smooth muscle coordinates α1-adrenergic receptor (α1-AR) vasoconstriction and blood pressure homeostasis. We recently identified amino acids 198-200 (YLK) on the PANX1 intracellular loop that are critical for α1-AR-mediated vasoconstriction and PANX1 channel function. We report herein that the YLK motif is contained within an SRC homology 2 domain and is directly phosphorylated by SRC proto-oncogene, nonreceptor tyrosine kinase (SRC) at Tyr <superscript>198</superscript> We demonstrate that PANX1-mediated ATP release occurs independently of intracellular calcium but is sensitive to SRC family kinase (SFK) inhibition, suggestive of channel regulation by tyrosine phosphorylation. Using a PANX1 Tyr <superscript>198</superscript> -specific antibody, SFK inhibitors, SRC knockdown, temperature-dependent SRC cells, and kinase assays, we found that PANX1-mediated ATP release and vasoconstriction involves constitutive phosphorylation of PANX1 Tyr <superscript>198</superscript> by SRC. We specifically detected SRC-mediated Tyr <superscript>198</superscript> phosphorylation at the plasma membrane and observed that it is not enhanced or induced by α1-AR activation. Last, we show that PANX1 immunostaining is enriched in the smooth muscle layer of arteries from hypertensive humans and that Tyr <superscript>198</superscript> phosphorylation is detectable in these samples, indicative of a role for membrane-associated PANX1 in small arteries of hypertensive humans. Our discovery adds insight into the regulation of PANX1 by post-translational modifications and connects a significant purinergic vasoconstriction pathway with a previously identified, yet unexplored, tyrosine kinase-based α1-AR constriction mechanism. This work implicates SRC-mediated PANX1 function in normal vascular hemodynamics and suggests that Tyr <superscript>198</superscript> -phosphorylated PANX1 is involved in hypertensive vascular pathology.<br /> (© 2019 DeLalio et al.)

Details

Language :
English
ISSN :
1083-351X
Volume :
294
Issue :
17
Database :
MEDLINE
Journal :
The Journal of biological chemistry
Publication Type :
Academic Journal
Accession number :
30814251
Full Text :
https://doi.org/10.1074/jbc.RA118.006982