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John T Powers

Showing results (1-10 of 16) with videos related to

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Cell Cycle (Georgetown, Tex.)|April 4, 2006
Oncogenes and the DNA damage response: Myc and E2F1 engage the ATM signaling pathway to activate p53 and induce apoptosisSungki Hong, Raju V Pusapati, John T Powers, et al.
Molecular Cancer Research : MCR|May 14, 2004
E2F1 uses the ATM signaling pathway to induce p53 and Chk2 phosphorylation and apoptosisJohn T Powers, SungKi Hong, Christopher N Mayhew, et al.
Molecular and Cellular Biology|February 13, 2002
ARF differentially modulates apoptosis induced by E2F1 and MycJamie L Russell, John T Powers, Robert J Rounbehler, et al.
Cancers|February 13, 2025
Ultra-High Dose Oral ω3 Eicosapentaenoic Acid (EPA), Docosahexaenoic Acid (DHA), or Oxidation-Resistant Deuterated DHA Block Tumorigenesis in a <i>MYCN</i>-Driven Neuroblastoma ModelVishwa Patel, Yan Ning Li, Lorraine-Rana E Benhamou, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 25, 2006
ATM promotes apoptosis and suppresses tumorigenesis in response to MycRaju V Pusapati, Robert J Rounbehler, SungKi Hong, et al.
Stem Cell Reports|October 16, 2014
The epithelial-mesenchymal transition factor SNAIL paradoxically enhances reprogrammingJuli J Unternaehrer, Rui Zhao, Kitai Kim, et al.
Chemical Biology & Drug Design|December 24, 2009
AP24163 inhibits the gatekeeper mutant of BCR-ABL and suppresses in vitro resistanceMohammad Azam, John T Powers, William Einhorn, et al.
Cancers|April 27, 2024
Unsaturated Fatty Acid Synthesis Is Associated with Worse Survival and Is Differentially Regulated by <i>MYCN</i> and Tumor Suppressor microRNAs in NeuroblastomaDennis A Sheeter, Secilia Garza, Hui Gyu Park, et al.
Plos Genetics|December 5, 2012
Zcchc11 uridylates mature miRNAs to enhance neonatal IGF-1 expression, growth, and survivalMatthew R Jones, Matthew T Blahna, Elyse Kozlowski, et al.
Nature Cell Biology|December 20, 2016
LIN28 phosphorylation by MAPK/ERK couples signalling to the post-transcriptional control of pluripotencyKaloyan M Tsanov, Daniel S Pearson, Zhaoting Wu, et al.
Pageof 2

Showing results (1-10 of 16) with videos related to

Sort By:
Pageof 2
Cell Cycle (Georgetown, Tex.)|April 4, 2006
Oncogenes and the DNA damage response: Myc and E2F1 engage the ATM signaling pathway to activate p53 and induce apoptosisSungki Hong, Raju V Pusapati, John T Powers, et al.
Molecular Cancer Research : MCR|May 14, 2004
E2F1 uses the ATM signaling pathway to induce p53 and Chk2 phosphorylation and apoptosisJohn T Powers, SungKi Hong, Christopher N Mayhew, et al.
Molecular and Cellular Biology|February 13, 2002
ARF differentially modulates apoptosis induced by E2F1 and MycJamie L Russell, John T Powers, Robert J Rounbehler, et al.
Cancers|February 13, 2025
Ultra-High Dose Oral ω3 Eicosapentaenoic Acid (EPA), Docosahexaenoic Acid (DHA), or Oxidation-Resistant Deuterated DHA Block Tumorigenesis in a <i>MYCN</i>-Driven Neuroblastoma ModelVishwa Patel, Yan Ning Li, Lorraine-Rana E Benhamou, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 25, 2006
ATM promotes apoptosis and suppresses tumorigenesis in response to MycRaju V Pusapati, Robert J Rounbehler, SungKi Hong, et al.
Stem Cell Reports|October 16, 2014
The epithelial-mesenchymal transition factor SNAIL paradoxically enhances reprogrammingJuli J Unternaehrer, Rui Zhao, Kitai Kim, et al.
Chemical Biology & Drug Design|December 24, 2009
AP24163 inhibits the gatekeeper mutant of BCR-ABL and suppresses in vitro resistanceMohammad Azam, John T Powers, William Einhorn, et al.
Cancers|April 27, 2024
Unsaturated Fatty Acid Synthesis Is Associated with Worse Survival and Is Differentially Regulated by <i>MYCN</i> and Tumor Suppressor microRNAs in NeuroblastomaDennis A Sheeter, Secilia Garza, Hui Gyu Park, et al.
Plos Genetics|December 5, 2012
Zcchc11 uridylates mature miRNAs to enhance neonatal IGF-1 expression, growth, and survivalMatthew R Jones, Matthew T Blahna, Elyse Kozlowski, et al.
Nature Cell Biology|December 20, 2016
LIN28 phosphorylation by MAPK/ERK couples signalling to the post-transcriptional control of pluripotencyKaloyan M Tsanov, Daniel S Pearson, Zhaoting Wu, et al.
Pageof 2