TY - JOUR
T1 - KSR1 is overexpressed in endometrial carcinoma and regulates proliferation and TRAIL-induced apoptosis by modulating FLIP levels
AU - Llobet, David
AU - Eritja, Nuria
AU - Domingo, Monica
AU - Bergada, Laura
AU - Mirantes, Cristina
AU - Santacana, Maria
AU - Pallares, Judit
AU - Macià, Anna
AU - Yeramian, Andree
AU - Encinas, Mario
AU - Moreno-Bueno, Gema
AU - Palacios, Jose
AU - Lewis, Robert E.
AU - Matias-Guiu, Xavier
AU - Dolcet, Xavi
N1 - Funding Information:
Supported by Fondo de Investigaciones Sanitarias (FIS) (grants FIS PI10/00604 , FIS PI070304 , FIS PI070276 ), from Ministerio de Ciencia e Innovación ( SAF2002-10529-E , and SAF2004-05250 ), the National Cancer Institute, National Institutes of Health (grant CA90400 ), Marató de TV3 2005-47 , RD06/0020/1034 , RD06/0020/0013 , 2009SGR794 , and 2004XT00090 , AECC, Catalunya Contra el Cancer and Programa de Intensificación de la Investigación, Instituto Carlos III . D.L. is supported by a predoctoral fellowship ( FI05/00191 ) from FIS, Ministerio de Sanidad y Consumo . N.E. is supported by a fellowship ( FI08/0012 ) from FIS . M.S. is supported by Red Temática de Investigación Cooperativa en Cáncer (RTICC; RD06/0020/1034 ). A.Y. is supported by a postdoctoral fellowship ( JCI-2008-1969 ) from Programa Juan de la Cierva, Ministerio de Ciencia e Innovación . X.D. is supported by a Miguel Servet fellowship ( CP05/00028 ) from FIS, Ministerio de Sanidad y Consumo .
PY - 2011/4
Y1 - 2011/4
N2 - The Raf/MEK/extracellular signal-regulated kinase (ERK) pathway participates in many processes altered in development and progression of cancer in human beings such as proliferation, transformation, differentiation, and apoptosis. Kinase suppressor of Ras 1 (KSR1) can interact with various kinases of the Raf/MEK/extracellular signal-regulated kinase pathway to enhance its activation. The role of KSR1 in endometrial carcinogenesis was investigated. cDNA and tissue microarrays demonstrated that expression of KSR1 was up-regulated in endometrial carcinoma. Furthermore, inhibition of KSR1 expression by specific small hairpin RNA resulted in reduction of both proliferation and anchorage-independent cell growth properties of endometrial cancer cells. Because inhibition of apoptosis has a pivotal role in endometrial carcinogenesis, the effects of KSR1 in regulation of tumor necrosis factor-related apoptosis-inducing ligand (TRAIL)-induced apoptosis were investigated. KSR1 knock-down sensitized resistant endometrial cell lines to both TRAIL- and Fas-induced apoptosis. Sensitization to TRAIL and agonistic anti-Fas antibody was caused by down-regulation of FLIP (FLICE-inhibitory protein). Also investigated was the molecular mechanism by which KSR1 regulates FLIP protein levels. It was demonstrated that KSR1 small hairpin RNA did not affect FLIP transcription or degradation. Rather, FLIP down-regulation was caused by Fas-associated death domain protein-dependent inhibition of FLIP translation triggered after TRAIL stimulation in KSR1-silenced cells. Re-expression of heterologous KSR1 in cells with down-regulated endogenous KSR1 restored FLIP protein levels and TRAIL resistance. In conclusion, KSR1 regulates endometrial sensitivity to TRAIL by regulating FLIP levels.
AB - The Raf/MEK/extracellular signal-regulated kinase (ERK) pathway participates in many processes altered in development and progression of cancer in human beings such as proliferation, transformation, differentiation, and apoptosis. Kinase suppressor of Ras 1 (KSR1) can interact with various kinases of the Raf/MEK/extracellular signal-regulated kinase pathway to enhance its activation. The role of KSR1 in endometrial carcinogenesis was investigated. cDNA and tissue microarrays demonstrated that expression of KSR1 was up-regulated in endometrial carcinoma. Furthermore, inhibition of KSR1 expression by specific small hairpin RNA resulted in reduction of both proliferation and anchorage-independent cell growth properties of endometrial cancer cells. Because inhibition of apoptosis has a pivotal role in endometrial carcinogenesis, the effects of KSR1 in regulation of tumor necrosis factor-related apoptosis-inducing ligand (TRAIL)-induced apoptosis were investigated. KSR1 knock-down sensitized resistant endometrial cell lines to both TRAIL- and Fas-induced apoptosis. Sensitization to TRAIL and agonistic anti-Fas antibody was caused by down-regulation of FLIP (FLICE-inhibitory protein). Also investigated was the molecular mechanism by which KSR1 regulates FLIP protein levels. It was demonstrated that KSR1 small hairpin RNA did not affect FLIP transcription or degradation. Rather, FLIP down-regulation was caused by Fas-associated death domain protein-dependent inhibition of FLIP translation triggered after TRAIL stimulation in KSR1-silenced cells. Re-expression of heterologous KSR1 in cells with down-regulated endogenous KSR1 restored FLIP protein levels and TRAIL resistance. In conclusion, KSR1 regulates endometrial sensitivity to TRAIL by regulating FLIP levels.
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U2 - 10.1016/j.ajpath.2010.12.041
DO - 10.1016/j.ajpath.2010.12.041
M3 - Article
C2 - 21435442
AN - SCOPUS:79953672942
SN - 0002-9440
VL - 178
SP - 1529
EP - 1543
JO - American Journal of Pathology
JF - American Journal of Pathology
IS - 4
ER -