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American Journal of Medical Genetics|January 15, 1992
Noninactivation of a portion of Xq28 in a balanced X-autosome translocationD Du Sart, P Kalitsis, M SchmidtAmerican Journal of Human Genetics|April 1, 1992
A chromosome 14-specific human satellite III DNA subfamily that shows variable presence on different chromosomes 14K H Choo, E Earle, B Vissel, et al.Genes & Development|September 20, 2000
Bub3 gene disruption in mice reveals essential mitotic spindle checkpoint function during early embryogenesisP Kalitsis, E Earle, K J Fowler, et al.Human Genetics|December 29, 2000
Components of the human spindle checkpoint control mechanism localize specifically to the active centromere on dicentric chromosomesR Saffery, D V Irvine, B Griffiths, et al.Proceedings of the National Academy of Sciences of the United States of America|March 14, 1998
Targeted disruption of mouse centromere protein C gene leads to mitotic disarray and early embryo deathP Kalitsis, K J Fowler, E Earle, et al.Proceedings of the National Academy of Sciences of the United States of America|July 1, 1989
Plant retrotransposon from Lilium henryi is related to Ty3 of yeast and the gypsy group of DrosophilaD R Smyth, P Kalitsis, J L Joseph, et al.Genomics|April 1, 1993
A chromosome 13-specific human satellite I DNA subfamily with minor presence on chromosome 21: further studies on Robertsonian translocationsP Kalitsis, E Earle, B Vissel, et al.Chromosome Research : an International Journal on the Molecular, Supramolecular and Evolutionary Aspects of Chromosome Biology|August 26, 1999
Conservation of centromere protein in vertebratesR Saffery, E Earle, D V Irvine, et al.Human Molecular Genetics|December 23, 1999
Human centromeres and neocentromeres show identical distribution patterns of >20 functionally important kinetochore-associated proteinsR Saffery, D V Irvine, B Griffiths, et al.Human Molecular Genetics|May 1, 1994
A novel nuclear protein binds centromeric alpha satellite DNAC Gaff, D du Sart, P Kalitsis, et al.Pageof 3