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Molecular and Cellular Biology|July 13, 2011
The tightly controlled deubiquitination activity of the human SAGA complex differentially modifies distinct gene regulatory elementsGuillaume Lang, Jacques Bonnet, David Umlauf, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|February 27, 2004
Disease progression despite early loss of polyglutamine protein expression in SCA7 mouse modelDominique Helmlinger, Gretta Abou-Sleymane, Gaël Yvert, et al.
Journal of Cell Science|April 18, 2013
The human TREX-2 complex is stably associated with the nuclear pore basketDavid Umlauf, Jacques Bonnet, François Waharte, et al.
Molecular Cell|August 23, 2002
Proteases acting on mutant huntingtin generate cleaved products that differentially build up cytoplasmic and nuclear inclusionsAstrid Lunkes, Katrin S Lindenberg, Léa Ben-Haïem, et al.
Molecular Cell|September 19, 2017
SAGA Is a General Cofactor for RNA Polymerase II TranscriptionTiago Baptista, Sebastian Grünberg, Nadège Minoungou, et al.
Molecular Cell|August 18, 2009
Gcn5 and SAGA regulate shelterin protein turnover and telomere maintenanceBoyko S Atanassov, Yvonne A Evrard, Asha S Multani, et al.
Nucleic Acids Research|July 24, 2022
SUPT3H-less SAGA coactivator can assemble and function without significantly perturbing RNA polymerase II transcription in mammalian cellsVeronique Fischer, Vincent Hisler, Elisabeth Scheer, et al.
Cell Death and Differentiation|March 18, 2021
Histone H2Bub1 deubiquitylation is essential for mouse development, but does not regulate global RNA polymerase II transcriptionFang Wang, Farrah El-Saafin, Tao Ye, et al.
Genes & Development|September 18, 2014
The SAGA coactivator complex acts on the whole transcribed genome and is required for RNA polymerase II transcriptionJacques Bonnet, Chen-Yi Wang, Tiago Baptista, et al.
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