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Nature Communications
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March 11, 2020
Antagonistic activities of CDC14B and CDK1 on USP9X regulate WT1-dependent mitotic transcription and survival
Michael Dietachmayr, Abirami Rathakrishnan, Oleksandra Karpiuk, et al.
Genes & Development
|
October 3, 2024
NEAT1 promotes genome stability via m<sup>6</sup>A methylation-dependent regulation of CHD4
Victoria Mamontova, Barbara Trifault, Anne-Sophie Gribling-Burrer, et al.
Cancer Discovery
|
May 3, 2015
Targeting Translation Initiation Bypasses Signaling Crosstalk Mechanisms That Maintain High MYC Levels in Colorectal Cancer
Armin Wiegering, Friedrich W Uthe, Thomas Jamieson, et al.
Cancer Discovery
|
March 3, 2025
Correction: Targeting Translation Initiation Bypasses Signaling Crosstalk Mechanisms That Maintain High MYC Levels in Colorectal Cancer
Armin Wiegering, Friedrich W Uthe, Thomas Jamieson, et al.
International Journal of Cancer
|
October 19, 2007
MYCN regulates oncogenic MicroRNAs in neuroblastoma
Johannes H Schulte, Sebastian Horn, Tobias Otto, et al.
Cancer Cell
|
September 2, 2014
Drugging MYCN through an allosteric transition in Aurora kinase A
William Clay Gustafson, Justin Gabriel Meyerowitz, Erin A Nekritz, et al.
Molecular Cell
|
January 16, 2021
Ubiquitylation of MYC couples transcription elongation with double-strand break repair at active promoters
Theresa Endres, Daniel Solvie, Jan B Heidelberger, et al.
EMBO Molecular Medicine
|
September 26, 2014
Tumor cell-specific inhibition of MYC function using small molecule inhibitors of the HUWE1 ubiquitin ligase
Stefanie Peter, Jennyfer Bultinck, Kevin Myant, et al.
Cancer Research
|
June 19, 2021
MYC- and MIZ1-Dependent Vesicular Transport of Double-Strand RNA Controls Immune Evasion in Pancreatic Ductal Adenocarcinoma
Bastian Krenz, Anneli Gebhardt-Wolf, Carsten P Ade, et al.
International Journal of Cancer
|
January 11, 2007
C-myc activation impairs the NF-kappaB and the interferon response: implications for the pathogenesis of Burkitt's lymphoma
Martin Schlee, Michael Hölzel, Sandra Bernard, et al.
Page
of 17
Search research articles
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Showing results (101-110 of 162) with videos related to
Sort By:
Page
of 17
Nature Communications
|
March 11, 2020
Antagonistic activities of CDC14B and CDK1 on USP9X regulate WT1-dependent mitotic transcription and survival
Michael Dietachmayr, Abirami Rathakrishnan, Oleksandra Karpiuk, et al.
Genes & Development
|
October 3, 2024
NEAT1 promotes genome stability via m<sup>6</sup>A methylation-dependent regulation of CHD4
Victoria Mamontova, Barbara Trifault, Anne-Sophie Gribling-Burrer, et al.
Cancer Discovery
|
May 3, 2015
Targeting Translation Initiation Bypasses Signaling Crosstalk Mechanisms That Maintain High MYC Levels in Colorectal Cancer
Armin Wiegering, Friedrich W Uthe, Thomas Jamieson, et al.
Cancer Discovery
|
March 3, 2025
Correction: Targeting Translation Initiation Bypasses Signaling Crosstalk Mechanisms That Maintain High MYC Levels in Colorectal Cancer
Armin Wiegering, Friedrich W Uthe, Thomas Jamieson, et al.
International Journal of Cancer
|
October 19, 2007
MYCN regulates oncogenic MicroRNAs in neuroblastoma
Johannes H Schulte, Sebastian Horn, Tobias Otto, et al.
Cancer Cell
|
September 2, 2014
Drugging MYCN through an allosteric transition in Aurora kinase A
William Clay Gustafson, Justin Gabriel Meyerowitz, Erin A Nekritz, et al.
Molecular Cell
|
January 16, 2021
Ubiquitylation of MYC couples transcription elongation with double-strand break repair at active promoters
Theresa Endres, Daniel Solvie, Jan B Heidelberger, et al.
EMBO Molecular Medicine
|
September 26, 2014
Tumor cell-specific inhibition of MYC function using small molecule inhibitors of the HUWE1 ubiquitin ligase
Stefanie Peter, Jennyfer Bultinck, Kevin Myant, et al.
Cancer Research
|
June 19, 2021
MYC- and MIZ1-Dependent Vesicular Transport of Double-Strand RNA Controls Immune Evasion in Pancreatic Ductal Adenocarcinoma
Bastian Krenz, Anneli Gebhardt-Wolf, Carsten P Ade, et al.
International Journal of Cancer
|
January 11, 2007
C-myc activation impairs the NF-kappaB and the interferon response: implications for the pathogenesis of Burkitt's lymphoma
Martin Schlee, Michael Hölzel, Sandra Bernard, et al.
Page
of 17