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  1. 1.   SNF2 Family Protein Fft3 Suppresses Nucleosome Turnover to Promote Epigenetic Inheritance and Proper Replication
  2. Taneja, Nitika; Zofall, Martin; Balachandran, Vanivilasini; Thillainadesan, Gobi; Sugiyama, Tomoyasu; Wheeler, David; Zhou, Ming; Grewal, Shiv I. S.
  3. MOLECULAR CELL. 2017, APR 6; 66(1): 50-+.
  1. 3.   Clr4/Suv39 and RNA Quality Control Factors Cooperate to Trigger RNAi and Suppress Antisense RNA
  2. Zhang, K.; Fischer, T.; Porter, R. L.; Dhakshnamoorthy, J.; Zofall, M.; Zhou, M.; Veenstra, T.; Grewal, S. I. S.
  3. Science. 2011, Mar; 331(6024): 1624-1627.
  1. 4.   Schizosaccharomyces pombe Dss1p Is a DNA Damage Checkpoint Protein That Recruits Rad24p, Cdc25p, and Rae1p to DNA Double-strand Breaks
  2. Selvanathan, S. P.; Thakurta, A. G.; Dhakshnamoorthy, J.; Zhou, M.; Veenstra, T. D.; Dhar, R.
  3. Journal of Biological Chemistry. 2010, May; 285(19): 14122-14133.
  1. 5.   Discovery of the mitotic selective chromatid segregation phenomenon and its implications for vertebrate development
  2. Armakolas, A.; Koutsilieris, M.; Klar, A. J. S.
  3. Current Opinion in Cell Biology. 2010, Feb; 22(1): 81-87.
  1. 6.   Histone H2A.Z cooperates with RNAi and heterochromatin factors to suppress antisense RNAs
  2. Zofall, M.; Fischer, T.; Zhang, K.; Zhou, M.; Cui, B. W.; Veenstra, T. D.; Grewal, S.
  3. Nature. 2009 461(7262): 419-U120.
  1. 7.   Rtf1-mediated eukaryotic site-specific replication termination
  2. Eydmann, T.; Sommariva, E.; Inagawa, T.; Mian, S.; Klar, A.; Dalgaard, J. Z.
  3. Genetics. 2008 180(1): 27-39.
  1. 8.   A hypothesis for how chromosome 11 translocations cause psychiatric disorders
  2. Singh, G.; Klar, A. J. S.
  3. Genetics. 2007, Oct; 177(2): 1259-1262.
  1. 9.   Transmembrane protein Sun2 is involved in tethering mammalian meiotic telomeres to the nuclear envelope
  2. Schmitt, J.; Benavente, R.; Hodzic, D.; Hoog, C.; Stewarts, C. L.; Alsheimer, M.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2007, May; 104(18): 7426-7431.
  1. 10.   Expression of EIF3-p48/INT6, TID1 and Patched in cancer, a profiling of multiple tumor types and correlation of expression
  2. Traicoff, J. L.; Chung, J. Y.; Braunschweig, T.; Mazo, I.; Shu, Y. M.; Ramesh, A.; D'Amico, M. W.; Galperin, M. M.; Knezevic, V.; Hewitt, S. M.
  3. Journal of Biomedical Science. 2007, May; 14(3): 395-405.
  1. 11.   RING-dependent tumor suppression and G2/M arrest induced by the TRC8 hereditary kidney cancer gene
  2. Brauweiler, A.; Lorick, K. L.; Lee, J. P.; Tsai, Y. C.; Chan, D.; Weissman, A. M.; Drabkin, H. A.; Gemmill, R. M.
  3. Oncogene. 2007, Apr; 26(16): 2263-2271.
  1. 12.   The Clr7 and Clr8 directionality factors and the Pcu4 cullin mediate heterochromatin formation in the fission yeast Schizosaccharomyces pombe
  2. Thon, G.; Hansen, K. R.; Altes, S. P.; Sidhu, D.; Singh, G.; Verhein-Hansen, J.; Bonaduce, M. J.; Klart, A. J. S.
  3. Genetics. 2005, DEC; 171(4): 1583-1595.
  1. 13.   Genetic variation, nucleotide diversity, and linkage disequilibrium in seven telomere stability genes suggest that these genes may be under constraint
  2. Savage, S. A.; Stewart, B. J.; Eckert, A.; Kiley, M.; Liao, J. S.; Chanock, S. J.
  3. Human Mutation. 2005, OCT; 26(4): 343-350.
  1. 14.   Biochemical interactions between proteins and mat1 cis-acting sequences required for imprinting in fission yeast
  2. Lee, B. S.; Grewal, S. I. S.; Klar, A. J. S.
  3. Molecular and Cellular Biology. 2004, NOV; 24(22): 9813-9822.
  1. 15.   An epigenetic hypothesis for human brain laterality, handedness, and psychosis development
  2. Klar, A. J. S.
  3. Cold Spring Harbor Symposia on Quantitative Biology. 2004 69: 499-506.
  1. 18.   A histone deacetylation inhibitor and mutant promote colony- type switching of the human pathogen Candida albicans
  2. Klar, A. J. S.; Srikantha, T.; Soll, D. R.
  3. Genetics. 2001 158(2): 919-924.
  1. 19.   Role for DNA polymerase alpha in epigenetic control of transcriptional silencing in fission yeast
  2. Nakayama, J.; Allshire, R. C.; Klar, A. J. S.; Grewal, S. I. S.
  3. Embo Journal. 2001 20(11): 2857-2866.
  1. 20.   A DNA replication-arrest site RTS1 regulates imprinting by determining the direction of replication at mat1 in S-pombe
  2. Dalgaard, J. Z.; Klar, A. J. S.
  3. Genes & Development. 2001 15(16): 2060-2068.
  1. 21.   Does S. pombe exploit the intrinsic asymmetry of DNA synthesis to imprint daughter cells for mating-type switching?
  2. Dalgaard, J. Z.; Klar, A. J. S.
  3. Trends in Genetics. 2001 17(3): 153-157.
  1. 22.   swi1 and swi3 perform imprinting, pausing, and termination of DNA replication in S-pombe
  2. Dalgaard, J. Z.; Klar, A. J. S.
  3. Cell. 2000 102(6): 745-751.
  1. 23.   The Saccharomyces cerevisiae RDN1 locus is sequestered from interchromosomal meiotic ectopic recombination in a SIR2-dependent manner
  2. Davis, E. S.; Shafer, B. K.; Strathern, J. N.
  3. Genetics. 2000 155(3): 1019-1032.
  1. 24.   RNA-mediated interference of a cdc25 homolog in Caenorhabditis elegans results in defects in the embryonic cortical membrane, meiosis, and mitosis
  2. Ashcroft, N. R.; Srayko, M.; Kosinski, M. E.; Mains, P. E.; Golden, A.
  3. Developmental Biology. 1999 206(1): 15-32.
  1. 25.   A Caenorhabditis elegans wee1 homolog is expressed in a temporally and spatially restricted pattern during embryonic development
  2. Wilson, M. A.; Hoch, R. V.; Ashcroft, N. R.; Kosinski, M. E.; Golden, A.
  3. Biochimica et Biophysica Acta - Gene Structure & Expression. 1999 1445(1): 99-109.
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