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Current Opinion in Cell Biology|February 24, 2009
ATR/Mec1: coordinating fork stability and repairAnna M Friedel, Brietta L Pike, Susan M GasserEMBO Reports|July 9, 2002
Intracellular trafficking of yeast telomerase componentsM Teresa Teixeira, Klaus Forstemann, Susan M Gasser, et al.Cell|December 21, 2004
Recruitment of the INO80 complex by H2A phosphorylation links ATP-dependent chromatin remodeling with DNA double-strand break repairHaico van Attikum, Olivier Fritsch, Barbara Hohn, et al.Annual Review of Genetics|December 1, 2004
The function of nuclear architecture: a genetic approachAngela Taddei, Florence Hediger, Frank R Neumann, et al.Journal of Cell Science|November 16, 2007
The processing of double-strand breaks and binding of single-strand-binding proteins RPA and Rad51 modulate the formation of ATR-kinase foci in yeastKarine Dubrana, Haico van Attikum, Florence Hediger, et al.Proceedings of the National Academy of Sciences of the United States of America|November 17, 2004
Long-range compaction and flexibility of interphase chromatin in budding yeast analyzed by high-resolution imaging techniquesKerstin Bystricky, Patrick Heun, Lutz Gehlen, et al.The Journal of Cell Biology|December 4, 2013
The shelterin protein POT-1 anchors Caenorhabditis elegans telomeres through SUN-1 at the nuclear peripheryHelder C Ferreira, Benjamin D Towbin, Thibaud Jegou, et al.Genes & Development|May 6, 2015
Regulation of recombination at yeast nuclear pores controls repair and triplet repeat stabilityXiaofeng A Su, Vincent Dion, Susan M Gasser, et al.EMBO Reports|September 11, 2013
Cohesin and the nucleolus constrain the mobility of spontaneous repair fociVincent Dion, Véronique Kalck, Andrew Seeber, et al.The EMBO Journal|August 9, 2011
Ribosome biogenesis factors bind a nuclear envelope SUN domain protein to cluster yeast telomeresChihiro Horigome, Takafumi Okada, Kyoko Shimazu, et al.Pageof 69