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Chromosome Research : an International Journal on the Molecular, Supramolecular and Evolutionary Aspects of Chromosome Biology|June 23, 2012
Neocentromeres and epigenetically inherited features of centromeresLaura S Burrack, Judith BermanTrends in Genetics : TIG|March 27, 2012
Flexibility of centromere and kinetochore structuresLaura S Burrack, Judith BermanCurrent Biology : CB|May 10, 2011
The requirement for the Dam1 complex is dependent upon the number of kinetochore proteins and microtubulesLaura S Burrack, Shelly E Applen, Judith BermanGenetics|May 10, 2015
Real-Time Evolution of a Subtelomeric Gene Family in Candida albicansMatthew Z Anderson, Lauren J Wigen, Laura S Burrack, et al.Molecular Microbiology|February 1, 2011
CaMtw1, a member of the evolutionarily conserved Mis12 kinetochore protein family, is required for efficient inner kinetochore assembly in the pathogenic yeast Candida albicansBabhrubahan Roy, Laura S Burrack, Museer A Lone, et al.Plos Genetics|September 3, 2010
Epigenetically-inherited centromere and neocentromere DNA replicates earliest in S-phaseAmnon Koren, Hung-Ji Tsai, Itay Tirosh, et al.Molecular Biology of the Cell|July 26, 2013
Monopolin recruits condensin to organize centromere DNA and repetitive DNA sequencesLaura S Burrack, Shelly E Applen Clancey, Jeremy M Chacón, et al.Current Opinion in Microbiology|December 13, 2006
Genomic approaches to understanding bacterial virulenceLaura S Burrack, Darren E HigginsMbio|September 4, 2014
Origin replication complex binding, nucleosome depletion patterns, and a primary sequence motif can predict origins of replication in a genome with epigenetic centromeresHung-Ji Tsai, Joshua A Baller, Ivan Liachko, et al.Current Opinion in Microbiology|October 24, 2006
Morphogenesis and cell cycle progression in Candida albicansJudith BermanPageof 16