| Literature DB >> 25301939 |
Huijuan Yu1, Jiajia Zhou2, Hirohide Takahashi3, William Yao4, Yuki Suzuki3, Xiao Yuan1, Shige H Yoshimura3, Yin Zhang5, Ya Liu1, Nerimiah Emmett4, Vincent Bond4, Dongmei Wang1, Xia Ding6, Kunio Takeyasu7, Xuebiao Yao8.
Abstract
The digestive function of the stomach depends on acidification of the gastric lumen. Acid secretion into the lumen is triggered by activation of a cAMP-dependent protein kinase (PKA) cascade, which ultimately results in the insertion of gastric H,K-ATPases into the apical plasma membranes of parietal cells. A coupling protein is ezrin whose phosphorylation at Ser-66 by PKA is required for parietal cell activation. However, little is known regarding the molecular mechanism(s) by which ezrin operates in gastric acid secretion. Here we show that phosphorylation of Ser-66 induces a conformational change of ezrin that enables its association with syntaxin 3 (Stx3) and provides a spatial cue for H,K-ATPase trafficking. This conformation-dependent association is specific for Stx3, and the binding interface is mapped to the N-terminal region. Biochemical analyses show that inhibition of ezrin phosphorylation at Ser-66 prevents ezrin-Stx3 association and insertion of H,K-ATPase into the apical plasma membrane of parietal cells. Using atomic force microscopic analyses, our study revealed that phosphorylation of Ser-66 induces unfolding of ezrin molecule to allow Stx3 binding to its N terminus. Given the essential role of Stx3 in polarized secretion, our study presents the first evidence in which phosphorylation-induced conformational rearrangement of the ezrin molecule provides a spatial cue for polarized membrane trafficking in epithelial cells.Entities:
Keywords: A-kinase Anchoring Protein (AKAP); ABC Transporter; ATPase; Atomic Force Microscopy (AFM); Cell Polarity; Cytoskeleton; Epithelial Cell; Exocytosis; Ezrin; H+-ATPase
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Year: 2014 PMID: 25301939 PMCID: PMC4246090 DOI: 10.1074/jbc.M114.581280
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157