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Location of genes coding for 18S and 28S ribosomal RNA within the genome of Mus musculus. , Elsevier SM., Chromosoma. October 14, 1975; 52 (3): 219-28.
The karyotype of the tetraploid species Xenopus vestitus Laurent (Anura: pipidae). , Tymowska J., Cytogenet Cell Genet. January 1, 1977; 19 (6): 344-54.
Characterization of highly and moderately repetitive 500 bp Eco RI fragments from Xenopus laevis DNA. , Hummel S., Nucleic Acids Res. June 25, 1984; 12 (12): 4921-38.
Diploid gynogenesis in Xenopus laevis and the localization with respect to the centromere of the gene for periodic albinism ap. , Thiébaud CH., J Embryol Exp Morphol. October 1, 1984; 83 33-42.
Chromatin conformation of yeast centromeres. , Bloom KS., J Cell Biol. November 1, 1984; 99 (5): 1559-68.
Gene- centromere mapping in Xenopus laevis. , Reinschmidt D., J Hered. January 1, 1985; 76 (5): 345-7.
UV-induced damage and repair in centromere DNA of yeast. , Resnick MA., Mol Gen Genet. November 1, 1987; 210 (1): 16-22.
Selective excision of the centromere chromatin complex from Saccharomyces cerevisiae. , Kenna M., J Cell Biol. July 1, 1988; 107 (1): 9-15.
Chromosome banding in Amphibia. XVI. High-resolution replication banding patterns in Xenopus laevis. , Schmid M., Chromosoma. November 1, 1991; 101 (2): 123-32.
Synaptonemal complexes of Xenopus laevis. , Loidl J., J Hered. January 1, 1992; 83 (4): 307-9.
Cloning and characterization of R- PTP-kappa, a new member of the receptor protein tyrosine phosphatase family with a proteolytically cleaved cellular adhesion molecule-like extracellular region. , Jiang YP., Mol Cell Biol. May 1, 1993; 13 (5): 2942-51.
A protein containing conserved RNA-recognition motifs is associated with ribosomal subunits in Saccharomyces cerevisiae. , Ripmaster TL., Nucleic Acids Res. July 11, 1993; 21 (14): 3211-6.
Domains required for CENP-C assembly at the kinetochore. , Lanini L., Mol Biol Cell. August 1, 1995; 6 (8): 1049-59.
Tiggers and DNA transposon fossils in the human genome. , Smit AF., Proc Natl Acad Sci U S A. February 20, 1996; 93 (4): 1443-8.
Long-range sequence analysis in Xq28: thirteen known and six candidate genes in 219.4 kb of high GC DNA between the RCP/ GCP and G6PD loci. , Chen EY., Hum Mol Genet. May 1, 1996; 5 (5): 659-68.
A subunit of the anaphase-promoting complex is a centromere-associated protein in mammalian cells. , Jörgensen PM., Mol Cell Biol. January 1, 1998; 18 (1): 468-76.
An integrated genetic and man-mouse comparative map of the DXHXS674- Pdha1 region of the mouse X chromosome. , Blair HJ., Genomics. February 15, 1998; 48 (1): 128-31.
Transcript mapping of the human chromosome 11q12-q13.1 gene-rich region identifies several newly described conserved genes. , Cooper PR., Genomics. May 1, 1998; 49 (3): 419-29.
Anaphase A chromosome movement and poleward spindle microtubule flux occur At similar rates in Xenopus extract spindles. , Desai A., J Cell Biol. May 4, 1998; 141 (3): 703-13.
Maintenance of sister-chromatid cohesion at the centromere by the Drosophila MEI-S332 protein. , Tang TT., Genes Dev. December 15, 1998; 12 (24): 3843-56.
INCENP binds the Aurora-related kinase AIRK2 and is required to target it to chromosomes, the central spindle and cleavage furrow. , Adams RR., Curr Biol. September 7, 2000; 10 (17): 1075-8.
The Drosophila RAD21 cohesin persists at the centromere region in mitosis. , Warren WD., Curr Biol. November 16, 2000; 10 (22): 1463-6.
Expression and partial characterization of kinesin-related proteins in differentiating and adult skeletal muscle. , Ginkel LM., Mol Biol Cell. December 1, 2000; 11 (12): 4143-58.
Human INCENP colocalizes with the Aurora-B/ AIRK2 kinase on chromosomes and is overexpressed in tumour cells. , Adams RR., Chromosoma. May 1, 2001; 110 (2): 65-74.
Mice lacking pituitary tumor transforming gene show testicular and splenic hypoplasia, thymic hyperplasia, thrombocytopenia, aberrant cell cycle progression, and premature centromere division. , Wang Z., Mol Endocrinol. November 1, 2001; 15 (11): 1870-9.
The S. pombe aurora-related kinase Ark1 associates with mitotic structures in a stage dependent manner and is required for chromosome segregation. , Petersen J., J Cell Sci. December 1, 2001; 114 (Pt 24): 4371-84.
C. elegans condensin promotes mitotic chromosome architecture, centromere organization, and sister chromatid segregation during mitosis and meiosis. , Hagstrom KA., Genes Dev. March 15, 2002; 16 (6): 729-42.
Aurora B kinase exists in a complex with survivin and INCENP and its kinase activity is stimulated by survivin binding and phosphorylation. , Bolton MA., Mol Biol Cell. September 1, 2002; 13 (9): 3064-77.
Chromosome mapping of Xenopus tropicalis using the G- and Ag-bands: tandem duplication and polyploidization of larvae heads. , Uehara M., Dev Growth Differ. October 1, 2002; 44 (5): 427-36.
The microtubule-destabilizing kinesin XKCM1 is required for chromosome positioning during spindle assembly. , Walczak CE., Curr Biol. October 29, 2002; 12 (21): 1885-9.
Activating and silencing the mitotic checkpoint through CENP-E-dependent activation/inactivation of BubR1. , Mao Y., Cell. July 11, 2003; 114 (1): 87-98.
An inner centromere protein that stimulates the microtubule depolymerizing activity of a KinI kinesin. , Ohi R., Dev Cell. August 1, 2003; 5 (2): 309-21.
Direct observation of microtubule dynamics at kinetochores in Xenopus extract spindles: implications for spindle mechanics. , Maddox P., J Cell Biol. August 4, 2003; 162 (3): 377-82.
Reversed polarized delivery of an aquaporin-2 mutant causes dominant nephrogenic diabetes insipidus. , Kamsteeg EJ., J Cell Biol. December 8, 2003; 163 (5): 1099-109.
Aurora-B phosphorylation in vitro identifies a residue of survivin that is essential for its localization and binding to inner centromere protein ( INCENP) in vivo. , Wheatley SP., J Biol Chem. February 13, 2004; 279 (7): 5655-60.
Aurora B phosphorylates centromeric MCAK and regulates its localization and microtubule depolymerization activity. , Lan W., Curr Biol. February 17, 2004; 14 (4): 273-86.
Depletion of centromeric MCAK leads to chromosome congression and segregation defects due to improper kinetochore attachments. , Kline-Smith SL., Mol Biol Cell. March 1, 2004; 15 (3): 1146-59.
Isolation and characterization of a novel DNA methyltransferase complex linking DNMT3B with components of the mitotic chromosome condensation machinery. , Geiman TM., Nucleic Acids Res. May 17, 2004; 32 (9): 2716-29.
Differentiation of cytoplasmic and meiotic spindle assembly MCAK functions by Aurora B-dependent phosphorylation. , Ohi R., Mol Biol Cell. June 1, 2004; 15 (6): 2895-906.
Vertebrate shugoshin links sister centromere cohesion and kinetochore microtubule stability in mitosis. , Salic A., Cell. September 3, 2004; 118 (5): 567-78.
Adenomatous polyposis coli associates with the microtubule-destabilizing protein XMCAK. , Banks JD., Curr Biol. November 23, 2004; 14 (22): 2033-8.
POLO kinase regulates the Drosophila centromere cohesion protein MEI-S332. , Clarke AS., Dev Cell. January 1, 2005; 8 (1): 53-64.
Identification of xenopus CENP-A and an associated centromeric DNA repeat. , Edwards NS ., Mol Biol Cell. April 1, 2005; 16 (4): 1800-10.
Mechanism of Aurora B activation by INCENP and inhibition by hesperadin. , Sessa F., Mol Cell. April 29, 2005; 18 (3): 379-91.
Roles of polymerization dynamics, opposed motors, and a tensile element in governing the length of Xenopus extract meiotic spindles. , Mitchison TJ ., Mol Biol Cell. June 1, 2005; 16 (6): 3064-76.
PIASy mediates SUMO-2 conjugation of Topoisomerase-II on mitotic chromosomes. , Azuma Y ., EMBO J. June 15, 2005; 24 (12): 2172-82.
Histone H1 is essential for mitotic chromosome architecture and segregation in Xenopus laevis egg extracts. , Maresca TJ ., J Cell Biol. June 20, 2005; 169 (6): 859-69.
Microtubule capture by CENP-E silences BubR1-dependent mitotic checkpoint signaling. , Mao Y., J Cell Biol. September 12, 2005; 170 (6): 873-80.
Deciphering protein function during mitosis in PtK cells using RNAi. , Stout JR., BMC Cell Biol. January 19, 2006; 7 26.
Aurora B is enriched at merotelic attachment sites, where it regulates MCAK. , Knowlton AL., Curr Biol. September 5, 2006; 16 (17): 1705-10.