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Peter Gallant

Showing results (11-20 of 32) with videos related to

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Nature Genetics|January 24, 2009
Max-independent functions of Myc in Drosophila melanogasterDominik Steiger, Michael Furrer, Daniela Schwinkendorf, et al.
Molecular and Cellular Biology|March 12, 2014
Drosophila mbm is a nucleolar myc and casein kinase 2 target required for ribosome biogenesis and cell growth of central brain neuroblastsAnna Hovhanyan, Eva K Herter, Jens Pfannstiel, et al.
The Journal of Biological Chemistry|October 13, 2010
Drosophila Myc interacts with host cell factor (dHCF) to activate transcription and control growthMichael Furrer, Mirjam Balbi, Monica Albarca-Aguilera, et al.
Cell|April 7, 2004
Drosophila myc regulates organ size by inducing cell competitionClaire de la Cova, Mauricio Abril, Paola Bellosta, et al.
BMC Biology|April 19, 2015
snoRNAs are a novel class of biologically relevant Myc targetsEva K Herter, Maria Stauch, Maria Gallant, et al.
Molecular and Cellular Biology|April 16, 2005
Whole-genome analysis reveals a strong positional bias of conserved dMyc-dependent E-boxesToby Hulf, Paola Bellosta, Michael Furrer, et al.
Proceedings of the National Academy of Sciences of the United States of America|August 10, 2005
Myc interacts genetically with Tip48/Reptin and Tip49/Pontin to control growth and proliferation during Drosophila developmentPaola Bellosta, Toby Hulf, Soda Balla Diop, et al.
Proceedings of the National Academy of Sciences of the United States of America|October 29, 2017
PAF1 complex component Leo1 helps recruit <i>Drosophila</i> Myc to promotersJennifer M Gerlach, Michael Furrer, Maria Gallant, et al.
Life Science Alliance|November 7, 2023
Spt5 interacts genetically with Myc and is limiting for brain tumor growth in <i>Drosophila</i>Julia Hofstetter, Ayoola Ogunleye, André Kutschke, et al.
Elife|August 23, 2024
Association with TFIIIC limits MYCN localisation in hubs of active promoters and chromatin accumulation of non-phosphorylated RNA polymerase IIRaphael Vidal, Eoin Leen, Steffi Herold, et al.
Pageof 4

Showing results (11-20 of 32) with videos related to

Sort By:
Pageof 4
Nature Genetics|January 24, 2009
Max-independent functions of Myc in Drosophila melanogasterDominik Steiger, Michael Furrer, Daniela Schwinkendorf, et al.
Molecular and Cellular Biology|March 12, 2014
Drosophila mbm is a nucleolar myc and casein kinase 2 target required for ribosome biogenesis and cell growth of central brain neuroblastsAnna Hovhanyan, Eva K Herter, Jens Pfannstiel, et al.
The Journal of Biological Chemistry|October 13, 2010
Drosophila Myc interacts with host cell factor (dHCF) to activate transcription and control growthMichael Furrer, Mirjam Balbi, Monica Albarca-Aguilera, et al.
Cell|April 7, 2004
Drosophila myc regulates organ size by inducing cell competitionClaire de la Cova, Mauricio Abril, Paola Bellosta, et al.
BMC Biology|April 19, 2015
snoRNAs are a novel class of biologically relevant Myc targetsEva K Herter, Maria Stauch, Maria Gallant, et al.
Molecular and Cellular Biology|April 16, 2005
Whole-genome analysis reveals a strong positional bias of conserved dMyc-dependent E-boxesToby Hulf, Paola Bellosta, Michael Furrer, et al.
Proceedings of the National Academy of Sciences of the United States of America|August 10, 2005
Myc interacts genetically with Tip48/Reptin and Tip49/Pontin to control growth and proliferation during Drosophila developmentPaola Bellosta, Toby Hulf, Soda Balla Diop, et al.
Proceedings of the National Academy of Sciences of the United States of America|October 29, 2017
PAF1 complex component Leo1 helps recruit <i>Drosophila</i> Myc to promotersJennifer M Gerlach, Michael Furrer, Maria Gallant, et al.
Life Science Alliance|November 7, 2023
Spt5 interacts genetically with Myc and is limiting for brain tumor growth in <i>Drosophila</i>Julia Hofstetter, Ayoola Ogunleye, André Kutschke, et al.
Elife|August 23, 2024
Association with TFIIIC limits MYCN localisation in hubs of active promoters and chromatin accumulation of non-phosphorylated RNA polymerase IIRaphael Vidal, Eoin Leen, Steffi Herold, et al.
Pageof 4