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MST4 kinase phosphorylates ACAP4 protein to orchestrate apical membrane remodeling during gastric acid secretion.

Authors :
Xiao Yuan
Yao, Phil Y.
Jiying Jiang
Yin Zhang
Zeqi Su
Yao, Wendy
Xueying Wang
Ping Gui
Mullen, McKay
Henry, Calmour
Ward, Tarsha
Wenwen Wang
Brako, Larry
Ruijun Tian
Xuannv Zhao
Fengsong Wang
Xinwang Cao
Dongmei Wang
Xing Liu
Xia Ding
Source :
Journal of Biological Chemistry. 9/29/2017, Vol. 292 Issue 39, p16174-16187. 14p.
Publication Year :
2017

Abstract

Digestion in the stomach depends on acidification of the lumen. Histamine-elicited acid secretion is triggered by activation of the PKA cascade, which ultimately results in the insertion of gastric H,K-ATPases into the apical plasma membranes of parietal cells. Our recent study revealed the functional role of PKA-MST4-ezrin signaling axis in histamine-elicited acid secretion. However, it remains uncharacterized how the PKA-MST4-ezrin signaling axis operates the insertion of H,KATPases into the apical plasma membranes of gastric parietal cells. Here we show that MST4 phosphorylates ACAP4, an ARF6 GTPase-activating protein, at Thr545. Histamine stimulation activates MST4 and promotes MST4 interaction with ACAP4. ACAP4 physically interacts withMST4and is a cognate substrate of MST4 during parietal cell activation. The phosphorylation site of ACAP4 by MST4 was mapped to Thr545 by mass spectrometric analyses. Importantly, phosphorylation of Thr545 is essential for acid secretion in parietal cells because either suppression of ACAP4 or overexpression of non-phosphorylatable ACAP4 prevents the apical membrane reorganization and proton pump translocation elicited by histamine stimulation. In addition, persistent overexpression of MST4 phosphorylationdeficient ACAP4 results in inhibition of gastric acid secretion and blockage of tubulovesicle fusion to the apical membranes. Significantly, phosphorylation of Thr545 enables ACAP4 to interact with ezrin. Given the location of Thr545 between the GTPase-activating protein domain and the first ankyrin repeat, we reason that MST4 phosphorylation elicits a conformational change that enables ezrin-ACAP4 interaction. Taken together, these results define a novel molecular mechanism linking the PKA-MST4-ACAP4 signaling cascade to polarized acid secretion in gastric parietal cells. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219258
Volume :
292
Issue :
39
Database :
Academic Search Index
Journal :
Journal of Biological Chemistry
Publication Type :
Academic Journal
Accession number :
125514012
Full Text :
https://doi.org/10.1074/jbc.M117.808212