Akt2 phosphorylates ezrin to trigger NHE3 translocation and activation

被引:79
作者
Shiue, H
Musch, MW
Wang, YM
Chang, EB
Turner, JR
机构
[1] Univ Chicago, Dept Pathol, Chicago, IL 60637 USA
[2] Univ Chicago, Dept Med, Chicago, IL 60637 USA
关键词
D O I
10.1074/jbc.M409471200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Initiation of Na+-glucose cotransport in intestinal absorptive epithelia causes NHE3 to be translocated to the apical plasma membrane, leading to cytoplasmic alkalinization. We reported recently that this NHE3 translocation requires ezrin phosphorylation. However, the kinase that phosphorylates ezrin in this process has not been identified. Because Akt has also been implicated in NHE3 translocation, we investigated the hypothesis that Akt phosphorylates ezrin. After initiation of Na+-glucose cotransport, Akt is activated with kinetics that parallel those of ezrin phosphorylation. Inhibition of p38 MAP kinase, which blocks ezrin phosphorylation, also prevents Akt activation. Purified Akt directly phosphorylates recombinant ezrin at threonine 567 in vitro in an ATP-dependent manner. This in vitro phosphorylation can be prevented by Akt inhibitors. In intact cells, inhibition of either phosphoinositide 3-kinase, an upstream regulator of Akt, or inhibition of Akt itself using inhibitors validated in vitro prevents ezrin phosphorylation after initiation of Na+-glucose cotransport. Specific small interfering RNA knockdown of Akt2 prevented ezrin phosphorylation in intact cells. Pharmacological Akt inhibition or Akt2 knockdown also prevented NHE3 translocation and activation after initiation of Na+-glucose cotransport, confirming the functional role of Akt2. These studies therefore identify Akt2 as a critical kinase that regulates ezrin phosphorylation and activation. This Akt2-dependent ezrin phosphorylation leads to NHE3 translocation and activation.
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页码:1688 / 1695
页数:8
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共 61 条
[1]   Mechanism of activation of protein kinase B by insulin and IGF-1 [J].
Alessi, DR ;
Andjelkovic, M ;
Caudwell, B ;
Cron, P ;
Morrice, N ;
Cohen, P ;
Hemmings, BA .
EMBO JOURNAL, 1996, 15 (23) :6541-6551
[2]   Cyclic AMP-dependent protein kinase phosphorylates merlin at serine 518 independently of p21-activated kinase and promotes merlin-ezrin heterodimerization [J].
Alfthan, K ;
Heiska, L ;
Grönholm, M ;
Renkema, GH ;
Carpen, O .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (18) :18559-18566
[3]   Interaction between two adapter proteins, PAG and EBP50:: a possible link between membrane rafts and actin cytoskeleton [J].
Brdicková, N ;
Brdicka, T ;
Andera, L ;
Spicka, J ;
Angelisová, P ;
Milgram, SL ;
Horejsí, V .
FEBS LETTERS, 2001, 507 (02) :133-136
[4]   Soluble ezrin purified from placenta exists as stable monomers and elongated dimers with masked C-terminal-ezrin-radixin-moesin association domains [J].
Bretscher, A ;
Gary, R ;
Berryman, M .
BIOCHEMISTRY, 1995, 34 (51) :16830-16837
[5]   ERM proteins and merlin: Integrators at the cell cortex [J].
Bretscher, A ;
Edwards, K ;
Fehon, RG .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2002, 3 (08) :586-599
[6]   The lateral mobility of NHE3 on the apical membrane of renal epithelial OK cells is limited by the PDZ domain proteins NHERF1/2, but is dependent on an intact actin cytoskeleton as determined by FRAP [J].
Cha, BY ;
Kenworthy, A ;
Murtazinal, R ;
Donowitz, M .
JOURNAL OF CELL SCIENCE, 2004, 117 (15) :3353-3365
[7]   Insulin-stimulated GLUT4 translocation requires the CAP-dependent activation of TC10 [J].
Chiang, SH ;
Baumann, CA ;
Kanzaki, M ;
Thurmond, DC ;
Watson, RT ;
Neudauer, CL ;
Macara, IG ;
Pessin, JE ;
Saltiel, AR .
NATURE, 2001, 410 (6831) :944-948
[8]   Physiological role of Akt in insulin-stimulated translocation of GLUT4 in transfected rat adipose cells [J].
Cong, LN ;
Chen, H ;
Li, YH ;
Zhou, LX ;
McGibbon, MA ;
Taylor, SI ;
Quon, MJ .
MOLECULAR ENDOCRINOLOGY, 1997, 11 (13) :1881-1890
[9]   Phosphoinositide binding and phosphorylation act sequentially in the activation mechanism of ezrin [J].
Fievet, BT ;
Gautreau, A ;
Roy, C ;
Del Maestro, L ;
Mangeat, P ;
Louvard, D ;
Arpin, M .
JOURNAL OF CELL BIOLOGY, 2004, 164 (05) :653-659
[10]   The EBP50-moesin interaction involves a binding site regulated by direct masking on the FERM domain [J].
Finnerty, CM ;
Chambers, D ;
Ingraffea, J ;
Faber, HR ;
Karplus, PA ;
Bretscher, A .
JOURNAL OF CELL SCIENCE, 2004, 117 (08) :1547-1552