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Bruno Amati

Showing results (51-60 of 66) with videos related to

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Nature Structural & Molecular Biology|November 29, 2011
Exploiting oncogene-induced replicative stress for the selective killing of Myc-driven tumorsMatilde Murga, Stefano Campaner, Andres J Lopez-Contreras, et al.
Cancer Research|May 20, 2016
Identification of MYC-Dependent Transcriptional Programs in Oncogene-Addicted Liver TumorsTheresia R Kress, Paola Pellanda, Luca Pellegrinet, et al.
Hepatology (Baltimore, Md.)|January 23, 2020
Cooperation Between MYC and β-Catenin in Liver Tumorigenesis Requires Yap/TazAndrea Bisso, Marco Filipuzzi, Gianni Paolo Gamarra Figueroa, et al.
The EMBO Journal|April 1, 2021
Integrated requirement of non-specific and sequence-specific DNA binding in Myc-driven transcriptionPaola Pellanda, Mattia Dalsass, Marco Filipuzzi, et al.
Gastroenterology|January 14, 2017
X-box Binding Protein 1 Regulates Unfolded Protein, Acute-Phase, and DNA Damage Responses During Regeneration of Mouse LiverJosepmaria Argemí, Theresia R Kress, Haisul C Y Chang, et al.
The EMBO Journal|December 24, 2004
Myc represses transcription through recruitment of DNA methyltransferase corepressorCarmen Brenner, Rachel Deplus, Céline Didelot, et al.
Nature|May 14, 2015
MYC regulates the core pre-mRNA splicing machinery as an essential step in lymphomagenesisCheryl M Koh, Marco Bezzi, Diana H P Low, et al.
Nature Structural & Molecular Biology|January 11, 2012
Symmetric dimethylation of H3R2 is a newly identified histone mark that supports euchromatin maintenanceValentina Migliori, Julius Müller, Sameer Phalke, et al.
Nature Cell Biology|June 28, 2016
Proteasome machinery is instrumental in a common gain-of-function program of the p53 missense mutants in cancerDawid Walerych, Kamil Lisek, Roberta Sommaggio, et al.
Nature Communications|April 15, 2020
Reactivation of Myc transcription in the mouse heart unlocks its proliferative capacityMegan J Bywater, Deborah L Burkhart, Jasmin Straube, et al.
Pageof 7

Showing results (51-60 of 66) with videos related to

Sort By:
Pageof 7
Nature Structural & Molecular Biology|November 29, 2011
Exploiting oncogene-induced replicative stress for the selective killing of Myc-driven tumorsMatilde Murga, Stefano Campaner, Andres J Lopez-Contreras, et al.
Cancer Research|May 20, 2016
Identification of MYC-Dependent Transcriptional Programs in Oncogene-Addicted Liver TumorsTheresia R Kress, Paola Pellanda, Luca Pellegrinet, et al.
Hepatology (Baltimore, Md.)|January 23, 2020
Cooperation Between MYC and β-Catenin in Liver Tumorigenesis Requires Yap/TazAndrea Bisso, Marco Filipuzzi, Gianni Paolo Gamarra Figueroa, et al.
The EMBO Journal|April 1, 2021
Integrated requirement of non-specific and sequence-specific DNA binding in Myc-driven transcriptionPaola Pellanda, Mattia Dalsass, Marco Filipuzzi, et al.
Gastroenterology|January 14, 2017
X-box Binding Protein 1 Regulates Unfolded Protein, Acute-Phase, and DNA Damage Responses During Regeneration of Mouse LiverJosepmaria Argemí, Theresia R Kress, Haisul C Y Chang, et al.
The EMBO Journal|December 24, 2004
Myc represses transcription through recruitment of DNA methyltransferase corepressorCarmen Brenner, Rachel Deplus, Céline Didelot, et al.
Nature|May 14, 2015
MYC regulates the core pre-mRNA splicing machinery as an essential step in lymphomagenesisCheryl M Koh, Marco Bezzi, Diana H P Low, et al.
Nature Structural & Molecular Biology|January 11, 2012
Symmetric dimethylation of H3R2 is a newly identified histone mark that supports euchromatin maintenanceValentina Migliori, Julius Müller, Sameer Phalke, et al.
Nature Cell Biology|June 28, 2016
Proteasome machinery is instrumental in a common gain-of-function program of the p53 missense mutants in cancerDawid Walerych, Kamil Lisek, Roberta Sommaggio, et al.
Nature Communications|April 15, 2020
Reactivation of Myc transcription in the mouse heart unlocks its proliferative capacityMegan J Bywater, Deborah L Burkhart, Jasmin Straube, et al.
Pageof 7