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A Kilbey

Showing results (1-10 of 12) with videos related to

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Oncogene|June 10, 1998
Evi-1 ZF1 DNA binding activity and a second distinct transcriptional repressor region are both required for optimal transformation of Rat1 fibroblastsA Kilbey, C Bartholomew
Cell Growth & Differentiation : the Molecular Biology Journal of the American Association for Cancer Research|October 8, 1999
Loss of cell cycle control by deregulation of cyclin-dependent kinase 2 kinase activity in Evi-1 transformed fibroblastsA Kilbey, V Stephens, C Bartholomew
Cell Growth & Differentiation : the Molecular Biology Journal of the American Association for Cancer Research|August 26, 1998
v-Jun represses c-jun proto-oncogene expression in vivo through a 12-O-tetradecanoylphorbol-13-acetate-responsive element in the proximal gene promoterS Hussain, A Kilbey, D A Gillespie
Oncogene|February 6, 1997
The Evi-1 proto-oncogene encodes a transcriptional repressor activity associated with transformationC Bartholomew, A Kilbey, A M Clark, et al.
Oncogene|June 6, 1996
The v-Jun oncoprotein replaces p39 c-Jun as the predominant AP-1 constituent in ASV17-transformed fibroblasts: implications for SAPK/JNK-mediated signal transductionA Kilbey, E J Black, M Unlu, et al.
Oncogene|August 1, 1994
Transcriptional activation by the v-Jun oncoprotein is independent of positive regulatory phosphorylationE J Black, A D Catling, J R Woodgett, et al.
Development (Cambridge, England)|December 1, 1995
Differential regulation of AP-1 and novel TRE-specific DNA-binding complexes during differentiation of oligodendrocyte-type-2-astrocyte (O-2A) progenitor cellsS C Barnett, M Rosario, A Doyle, et al.
The Journal of Biological Chemistry|May 1, 2001
Evi-1 transforming and repressor activities are mediated by CtBP co-repressor proteinsS Palmer, J P Brouillet, A Kilbey, et al.
Oncogene|June 19, 2008
Gene array analysis reveals a common Runx transcriptional programme controlling cell adhesion and survivalS Wotton, A Terry, A Kilbey, et al.
Oncogene|May 19, 2009
RUNX1 and its fusion oncoprotein derivative, RUNX1-ETO, induce senescence-like growth arrest independently of replicative stressK Wolyniec, S Wotton, A Kilbey, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Oncogene|June 10, 1998
Evi-1 ZF1 DNA binding activity and a second distinct transcriptional repressor region are both required for optimal transformation of Rat1 fibroblastsA Kilbey, C Bartholomew
Cell Growth & Differentiation : the Molecular Biology Journal of the American Association for Cancer Research|October 8, 1999
Loss of cell cycle control by deregulation of cyclin-dependent kinase 2 kinase activity in Evi-1 transformed fibroblastsA Kilbey, V Stephens, C Bartholomew
Cell Growth & Differentiation : the Molecular Biology Journal of the American Association for Cancer Research|August 26, 1998
v-Jun represses c-jun proto-oncogene expression in vivo through a 12-O-tetradecanoylphorbol-13-acetate-responsive element in the proximal gene promoterS Hussain, A Kilbey, D A Gillespie
Oncogene|February 6, 1997
The Evi-1 proto-oncogene encodes a transcriptional repressor activity associated with transformationC Bartholomew, A Kilbey, A M Clark, et al.
Oncogene|June 6, 1996
The v-Jun oncoprotein replaces p39 c-Jun as the predominant AP-1 constituent in ASV17-transformed fibroblasts: implications for SAPK/JNK-mediated signal transductionA Kilbey, E J Black, M Unlu, et al.
Oncogene|August 1, 1994
Transcriptional activation by the v-Jun oncoprotein is independent of positive regulatory phosphorylationE J Black, A D Catling, J R Woodgett, et al.
Development (Cambridge, England)|December 1, 1995
Differential regulation of AP-1 and novel TRE-specific DNA-binding complexes during differentiation of oligodendrocyte-type-2-astrocyte (O-2A) progenitor cellsS C Barnett, M Rosario, A Doyle, et al.
The Journal of Biological Chemistry|May 1, 2001
Evi-1 transforming and repressor activities are mediated by CtBP co-repressor proteinsS Palmer, J P Brouillet, A Kilbey, et al.
Oncogene|June 19, 2008
Gene array analysis reveals a common Runx transcriptional programme controlling cell adhesion and survivalS Wotton, A Terry, A Kilbey, et al.
Oncogene|May 19, 2009
RUNX1 and its fusion oncoprotein derivative, RUNX1-ETO, induce senescence-like growth arrest independently of replicative stressK Wolyniec, S Wotton, A Kilbey, et al.
Pageof 2