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Genetics|December 8, 2004
Compartmentalization of the yeast meiotic nucleus revealed by analysis of ectopic recombinationHélène B Schlecht, Michael Lichten, Alastair S H GoldmanDNA Repair|November 4, 2010
Separable roles for Exonuclease I in meiotic DNA double-strand break repairRebecca E Keelagher, Victoria E Cotton, Alastair S H Goldman, et al.Nature Communications|September 16, 2021
USP11 controls R-loops by regulating senataxin proteostasisMateusz Jurga, Arwa A Abugable, Alastair S H Goldman, et al.DNA Repair|July 21, 2010
Human RECQL5 overcomes thymidine-induced replication stressRachel Blundred, Katie Myers, Thomas Helleday, et al.Plos Computational Biology|May 10, 2012
Modeling meiotic chromosomes indicates a size dependent contribution of telomere clustering and chromosome rigidity to homologue juxtapositionChristopher A Penfold, Paul E Brown, Neil D Lawrence, et al.Open Biology|August 2, 2013
Positive regulation of meiotic DNA double-strand break formation by activation of the DNA damage checkpoint kinase Mec1(ATR)Stephen Gray, Rachal M Allison, Valerie Garcia, et al.Molecular Cell|May 2, 2002
Wild-type levels of Spo11-induced DSBs are required for normal single-strand resection during meiosisMatthew J Neale, Madhu Ramachandran, Edgar Trelles-Sticken, et al.Nucleic Acids Research|March 13, 2010
Evidence that MEK1 positively promotes interhomologue double-strand break repairYaroslav Terentyev, Rebecca Johnson, Matthew J Neale, et al.Nucleic Acids Research|July 13, 2005
Methyl methanesulfonate (MMS) produces heat-labile DNA damage but no detectable in vivo DNA double-strand breaksCecilia Lundin, Matthew North, Klaus Erixon, et al.DNA Repair|December 15, 2010
Mre11 and Exo1 contribute to the initiation and processivity of resection at meiotic double-strand breaks made independently of Spo11Adam Hodgson, Yaroslav Terentyev, Rebecca A Johnson, et al.Pageof 2