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Worm|October 4, 2016
Mechanism of chromatin segregation to the nuclear periphery in C. elegans embryosAdriana Gonzalez-Sandoval, Susan M GasserCurrent Opinion in Cell Biology|July 31, 2024
Chromatin remodeling and spatial concerns in DNA double-strand break repairJessica A Downs, Susan M GasserCell Death and Differentiation|August 18, 2023
Dynamic 3D genome reorganization during senescence: defining cell states through chromatinHaitham A Shaban, Susan M GasserNucleus (Austin, Tex.)|May 18, 2016
Spatial segregation of heterochromatin: Uncovering functionality in a multicellular organismDaphne S Cabianca, Susan M GasserTrends in Genetics : TIG|June 18, 2016
On TADs and LADs: Spatial Control Over Gene ExpressionAdriana Gonzalez-Sandoval, Susan M GasserJournal of Structural Biology|December 20, 2002
Myosin-like proteins 1 and 2 are not required for silencing or telomere anchoring, but act in the Tel1 pathway of telomere length controlFlorence Hediger, Karine Dubrana, Susan M GasserCold Spring Harbor Perspectives in Biology|June 18, 2010
The budding yeast nucleusAngela Taddei, Heiko Schober, Susan M GasserDNA Repair|June 2, 2009
Posttranslational modifications of repair factors and histones in the cellular response to stalled replication forksThomas Schleker, Shigeki Nagai, Susan M GasserGenes & Development|September 14, 2013
Checkpoint kinases and the INO80 nucleosome remodeling complex enhance global chromatin mobility in response to DNA damageAndrew Seeber, Vincent Dion, Susan M GasserGene|June 25, 2013
SIR-nucleosome interactions: structure-function relationships in yeast silent chromatinMariano Oppikofer, Stephanie Kueng, Susan M GasserPageof 17