TY - JOUR
T1 - Cdh1-anaphase-promoting complex targets Skp2 for destruction in transforming growth factor β-induced growth inhibition
AU - Liu, Weijun
AU - Wu, George
AU - Li, Wenqi
AU - Lobur, David
AU - Wan, Yong
PY - 2007/4
Y1 - 2007/4
N2 - As a subunit of a ubiquitin ligase, Skp2 is implicated in facilitating cell cycle progression via degradation of various protein targets. We report here that Skp2 is rapidly degraded following cellular stimulation by the cytokine transforming growth factor β (TGF-β) and that this degradation stabilizes the cell cycle arrest protein p27. The Skp2 degradation is mediated by Cdh1-anaphase-promoting complex (APC), as shown by depletion of Cdh1 with small interfering RNA, and by reconstitution of ubiquitylation reactions in a purified system. Blockage of Skp2 degradation greatly reduces TGF-P-induced cell cycle arrest, as does expression of a nondegradable Skp2 mutant. Furthermore, we demonstrate that TGF-P-induced Skp2 degradation is mediated by the Smad cascade. The degradation of Skp2 stabilizes p27, thereby ensuring TGF-β-induced cell cycle arrest. These results identify a novel mechanism for tumor suppression by TGF-P and explain why dysfunction of APC in the TGF-P pathway in responsive cells is associated with cancer.
AB - As a subunit of a ubiquitin ligase, Skp2 is implicated in facilitating cell cycle progression via degradation of various protein targets. We report here that Skp2 is rapidly degraded following cellular stimulation by the cytokine transforming growth factor β (TGF-β) and that this degradation stabilizes the cell cycle arrest protein p27. The Skp2 degradation is mediated by Cdh1-anaphase-promoting complex (APC), as shown by depletion of Cdh1 with small interfering RNA, and by reconstitution of ubiquitylation reactions in a purified system. Blockage of Skp2 degradation greatly reduces TGF-P-induced cell cycle arrest, as does expression of a nondegradable Skp2 mutant. Furthermore, we demonstrate that TGF-P-induced Skp2 degradation is mediated by the Smad cascade. The degradation of Skp2 stabilizes p27, thereby ensuring TGF-β-induced cell cycle arrest. These results identify a novel mechanism for tumor suppression by TGF-P and explain why dysfunction of APC in the TGF-P pathway in responsive cells is associated with cancer.
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U2 - 10.1128/MCB.01830-06
DO - 10.1128/MCB.01830-06
M3 - Article
C2 - 17283060
AN - SCOPUS:34147213257
SN - 0270-7306
VL - 27
SP - 2967
EP - 2979
JO - Molecular and cellular biology
JF - Molecular and cellular biology
IS - 8
ER -