CCAR2 controls mitotic progression through spatiotemporal regulation of Aurora B
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[1] G. Adelmant,et al. Interaction of DBC1 with polyoma small T antigen promotes its degradation and negatively regulates tumorigenesis , 2021, The Journal of biological chemistry.
[2] S. Ravid,et al. Aurora-B phosphorylates the myosin II heavy chain to promote cytokinesis , 2021, The Journal of biological chemistry.
[3] S. Elowe,et al. A quantitative and semiautomated method for determining misaligned and lagging chromosomes during mitosis , 2020, Molecular biology of the cell.
[4] P. Stukenberg,et al. A Condensed View of the Chromosome Passenger Complex. , 2020, Trends in cell biology.
[5] A. Akhmanova,et al. MKLP2 Is a Motile Kinesin that Transports the Chromosomal Passenger Complex during Anaphase , 2020, Current Biology.
[6] Jorge G. Ferreira,et al. α-Tubulin detyrosination impairs mitotic error correction by suppressing MCAK centromeric activity , 2020, The Journal of cell biology.
[7] R. Medema,et al. Distinct Roles for Condensin’s Two ATPase Sites in Chromosome Condensation , 2019, Molecular cell.
[8] G. Zachos,et al. Building bridges between chromosomes: novel insights into the abscission checkpoint , 2019, Cellular and Molecular Life Sciences.
[9] H. Funabiki. Correcting aberrant kinetochore microtubule attachments: a hidden regulation of Aurora B on microtubules. , 2019, Current opinion in cell biology.
[10] Ja-Eun Kim,et al. CCAR2/DBC1 and Hsp60 Positively Regulate Expression of Survivin in Neuroblastoma Cells , 2019, International journal of molecular sciences.
[11] Fangwei Wang,et al. Aurora B kinase activity–dependent and –independent functions of the chromosomal passenger complex in regulating sister chromatid cohesion , 2018, The Journal of Biological Chemistry.
[12] D. Robinson,et al. Recent advances in cytokinesis: understanding the molecular underpinnings , 2018, F1000Research.
[13] A. De Nicolo,et al. Aurora-PLK1 cascades as key signaling modules in the regulation of mitosis , 2018, Science Signaling.
[14] A. Claing,et al. ARF6 protects sister chromatid cohesion to ensure the formation of stable kinetochore-microtubule attachments , 2018, Journal of Cell Science.
[15] H. Lewin,et al. Chromosome Segregation Is Biased by Kinetochore Size , 2018, Current Biology.
[16] Raquel A. Oliveira,et al. Absence of the Spindle Assembly Checkpoint Restores Mitotic Fidelity upon Loss of Sister Chromatid Cohesion , 2018, Current Biology.
[17] L. Zannini,et al. Cell cycle and apoptosis regulator 2 at the interface between DNA damage response and cell physiology. , 2018, Mutation research.
[18] V. Guacci,et al. Cohesin Function in Cohesion, Condensation, and DNA Repair Is Regulated by Wpl1p via a Common Mechanism in Saccharomyces cerevisiae , 2017, Genetics.
[19] Susannah Rankin,et al. Esco1 and Esco2 regulate distinct cohesin functions during cell cycle progression , 2017, Proceedings of the National Academy of Sciences.
[20] C. Schmults,et al. CCAR2 Is Required for Proliferation and Tumor Maintenance in Human Squamous Cell Carcinoma. , 2017, The Journal of investigative dermatology.
[21] J. Schumacher,et al. Aurora-A mediated histone H3 phosphorylation of threonine 118 controls condensin I and cohesin occupancy in mitosis , 2016, eLife.
[22] A. Musacchio,et al. Requirement for PLK1 kinase activity in the maintenance of a robust spindle assembly checkpoint , 2015, Biology Open.
[23] Amanda J. Guise,et al. The Proteomic Profile of Deleted in Breast Cancer 1 (DBC1) Interactions Points to a Multifaceted Regulation of Gene Expression* , 2015, Molecular & Cellular Proteomics.
[24] B. Novák,et al. Premature Sister Chromatid Separation Is Poorly Detected by the Spindle Assembly Checkpoint as a Result of System-Level Feedback. , 2015, Cell reports.
[25] A. Musacchio. The Molecular Biology of Spindle Assembly Checkpoint Signaling Dynamics , 2015, Current Biology.
[26] A. Musacchio,et al. The Aurora B Kinase in Chromosome Bi-Orientation and Spindle Checkpoint Signaling , 2015, Front. Oncol..
[27] Yuejia Huang,et al. Spatiotemporal dynamics of Aurora B-PLK1-MCAK signaling axis orchestrates kinetochore bi-orientation and faithful chromosome segregation , 2015, Scientific Reports.
[28] T. Hirano,et al. Chromosome Dynamics during Mitosis. , 2015, Cold Spring Harbor perspectives in biology.
[29] Mayumi Kitagawa,et al. The chromosomal passenger complex (CPC) as a key orchestrator of orderly mitotic exit and cytokinesis , 2015, Front. Cell Dev. Biol..
[30] Wootae Kim,et al. Polo-like kinase 1 inhibitor BI2536 causes mitotic catastrophe following activation of the spindle assembly checkpoint in non-small cell lung cancer cells. , 2015, Cancer letters.
[31] D. Gerlich,et al. Cytokinetic abscission: molecular mechanisms and temporal control. , 2014, Developmental cell.
[32] F. Tsien,et al. Chromosome preparation from cultured cells. , 2014, Journal of visualized experiments : JoVE.
[33] S. Lens,et al. Cell division: control of the chromosomal passenger complex in time and space , 2013, Chromosoma.
[34] S. Lens,et al. Cell division: control of the chromosomal passenger complex in time and space , 2013, Chromosoma.
[35] J. Ellenberg,et al. Wapl is an essential regulator of chromatin structure and chromosome segregation , 2013, Nature.
[36] N. Onishi,et al. Targeting Aurora B to the Equatorial Cortex by MKlp2 Is Required for Cytokinesis , 2013, PloS one.
[37] F. Uhlmann,et al. Budding Yeast Wapl Controls Sister Chromatid Cohesion Maintenance and Chromosome Condensation , 2013, Current Biology.
[38] D. Pellman,et al. Linking abnormal mitosis to the acquisition of DNA damage , 2012, The Journal of cell biology.
[39] W. Earnshaw,et al. The chromosomal passenger complex (CPC): from easy rider to the godfather of mitosis , 2012, Nature Reviews Molecular Cell Biology.
[40] Stephen S. Taylor,et al. The Spindle Assembly Checkpoint , 2012, Current Biology.
[41] T. Hirano. Condensins: universal organizers of chromosomes with diverse functions. , 2012, Genes & development.
[42] Owen J. Marshall,et al. Contrasting roles of condensin I and condensin II in mitotic chromosome formation , 2012, Journal of Cell Science.
[43] D. Compton,et al. Chromosome missegregation in human cells arises through specific types of kinetochore–microtubule attachment errors , 2011, Proceedings of the National Academy of Sciences.
[44] T. Hirano,et al. The relative ratio of condensin I to II determines chromosome shapes. , 2011, Genes & development.
[45] Yoshinori Watanabe,et al. Condensin association with histone H2A shapes mitotic chromosomes , 2011, Nature.
[46] Silvia Polakova,et al. Merotelic kinetochore attachment: causes and effects , 2011, Trends in cell biology.
[47] R. Medema,et al. Aurora B potentiates Mps1 activation to ensure rapid checkpoint establishment at the onset of mitosis , 2011, Nature communications.
[48] Daniel Rico,et al. Cohesin organizes chromatin loops at DNA replication factories. , 2010, Genes & development.
[49] T. Kitajima,et al. Phosphorylation of mammalian Sgo2 by Aurora B recruits PP2A and MCAK to centromeres. , 2010, Genes & development.
[50] S. Sung,et al. Deleted in breast cancer 1 (DBC1) is a dynamically regulated protein. , 2010, Neoplasma (Bratislava).
[51] Junjie Chen,et al. p30 DBC is a potential regulator of tumorigenesis , 2009, Cell cycle.
[52] S. Biggins,et al. Pericentromeric sister chromatid cohesion promotes kinetochore biorientation. , 2009, Molecular biology of the cell.
[53] J. Peters,et al. The cohesin complex and its roles in chromosome biology. , 2008, Genes & development.
[54] S. Lens,et al. The chromosomal passenger complex and the spindle assembly checkpoint: kinetochore-microtubule error correction and beyond , 2008, Cell Division.
[55] J. Peters,et al. Aurora B controls the association of condensin I but not condensin II with mitotic chromosomes , 2007, Journal of Cell Science.
[56] D. J. Clarke,et al. Cohesin Is Dispensable for Centromere Cohesion in Human Cells , 2007, PloS one.
[57] L. Sargent,et al. Comparison of prometaphase chromosome techniques with emphasis on the role of colcemid , 1984, In Vitro.
[58] D. Cimini,et al. Aurora Kinase Promotes Turnover of Kinetochore Microtubules to Reduce Chromosome Segregation Errors , 2006, Current Biology.
[59] J. Ellenberg,et al. Condensin I Stabilizes Chromosomes Mechanically through a Dynamic Interaction in Live Cells , 2006, Current Biology.
[60] J. Gerton. Chromosome Cohesion: A Cycle of Holding Together and Falling Apart , 2005, PLoS biology.
[61] J. Peters,et al. The small molecule Hesperadin reveals a role for Aurora B in correcting kinetochore–microtubule attachment and in maintaining the spindle assembly checkpoint , 2003, The Journal of cell biology.
[62] Stephen S. Taylor,et al. Aurora B couples chromosome alignment with anaphase by targeting BubR1, Mad2, and Cenp-E to kinetochores , 2003, The Journal of cell biology.
[63] Barbara J Meyer,et al. C. elegans condensin promotes mitotic chromosome architecture, centromere organization, and sister chromatid segregation during mitosis and meiosis. , 2002, Genes & development.
[64] J. Peters,et al. Cohesin Cleavage by Separase Required for Anaphase and Cytokinesis in Human Cells , 2001, Science.
[65] Alexey Khodjakov,et al. Merotelic Kinetochore Orientation Is a Major Mechanism of Aneuploidy in Mitotic Mammalian Tissue Cells , 2001, The Journal of cell biology.
[66] J. Peters,et al. Two Distinct Pathways Remove Mammalian Cohesin from Chromosome Arms in Prophase and from Centromeres in Anaphase , 2000, Cell.
[67] K. Nasmyth,et al. Cohesin ensures bipolar attachment of microtubules to sister centromeres and resists their precocious separation , 2000, Nature Cell Biology.
[68] V. Guacci,et al. A Direct Link between Sister Chromatid Cohesion and Chromosome Condensation Revealed through the Analysis of MCD1 in S. cerevisiae , 1997, Cell.