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  4. 14-3-3σ regulates β-catenin-mediated mouse embryonic stem cell proliferation by sequestering GSK-3β
 
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14-3-3σ regulates β-catenin-mediated mouse embryonic stem cell proliferation by sequestering GSK-3β

Journal
PLoS ONE
Journal Volume
7
Journal Issue
6
Date Issued
2012
Author(s)
Chang T.-C.
Liu C.-C.
Hsing E.-W.
Liang S.-M.
Chi Y.-H.
Sung L.-Y.
Lin S.-P.
Shen T.-L.
BOR-SHENG KO  
Yen B.L.
Yet S.-F.
Wu K.K.
TANG-LONG SHEN  
LI-YING SUNG  
SHAU-PING LIN  
DOI
10.1371/journal.pone.0040193
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84863112758&doi=10.1371%2fjournal.pone.0040193&partnerID=40&md5=387c8bc6f541f5d31a561e658e3edf1d
https://scholars.lib.ntu.edu.tw/handle/123456789/619743
Abstract
Pluripotent embryonic stem cells are considered to be an unlimited cell source for tissue regeneration and cell-based therapy. Investigating the molecular mechanism underlying the regulation of embryonic stem cell expansion is thus important. 14-3-3 proteins are implicated in controlling cell division, signaling transduction and survival by interacting with various regulatory proteins. However, the function of 14-3-3 in embryonic stem cell proliferation remains unclear. In this study, we show that all seven 14-3-3 isoforms were detected in mouse embryonic stem cells. Retinoid acid suppressed selectively the expression of 14-3-3σ isoform. Knockdown of 14-3-3σ with siRNA reduced embryonic stem cell proliferation, while only 14-3-3σ transfection increased cell growth and partially rescued retinoid acid-induced growth arrest. Since the growth-enhancing action of 14-3-3σ was abrogated by β-catenin knockdown, we investigated the influence of 14-3-3σ overexpression on β-catenin/GSK-3β. 14-3-3σ bound GSK-3β and increased GSK-3β phosphorylation in a PI-3K/Akt-dependent manner. It disrupted β-catenin binding by the multiprotein destruction complex. 14-3-3σ overexpression attenuated β-catenin phosphorylation and rescued the decline of β-catenin induced by retinoid acid. Furthermore, 14-3-3σ enhanced Wnt3a-induced β-catenin level and GSK-3β phosphorylation. DKK, an inhibitor of Wnt signaling, abolished Wnt3a-induced effect but did not interfere GSK-3β/14-3-3σ binding. Our findings show for the first time that 14-3-3σ plays an important role in regulating mouse embryonic stem cell proliferation by binding and sequestering phosphorylated GSK-3β and enhancing Wnt-signaled GSK-3β inactivation. 14-3-3σ is a novel target for embryonic stem cell expansion.
Type
journal article

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