Condensin confers the longitudinal rigidity of chromosomes
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[1] Andreas Ritter,et al. Manipulating The Mouse Embryo A Laboratory Manual , 2016 .
[2] F. Uhlmann,et al. Condensin aids sister chromatid decatenation by topoisomerase II , 2013, Nucleic acids research.
[3] C. Haering,et al. Entrapment of chromosomes by condensin rings prevents their breakage during cytokinesis. , 2013, Developmental cell.
[4] K. Nasmyth,et al. Sgol2 provides a regulatory platform that coordinates essential cell cycle processes during meiosis I in oocytes , 2013, eLife.
[5] Yusuke Miyanari,et al. Live visualization of chromatin dynamics with fluorescent TALEs , 2013, Nature Structural &Molecular Biology.
[6] T. Kuroiwa,et al. Spatiotemporal dynamics of condensins I and II: evolutionary insights from the primitive red alga Cyanidioschyzon merolae , 2013, Molecular biology of the cell.
[7] B. Oh,et al. An asymmetric SMC–kleisin bridge in prokaryotic condensin , 2013, Nature Structural &Molecular Biology.
[8] T. Hirano,et al. Condensins I and II are essential for construction of bivalent chromosomes in mouse oocytes , 2011, Molecular Biology of the Cell.
[9] C. Haering,et al. Condensin structures chromosomal DNA through topological links , 2011, Nature Structural &Molecular Biology.
[10] T. Hirano,et al. The relative ratio of condensin I to II determines chromosome shapes. , 2011, Genes & development.
[11] J. Ellenberg,et al. Complete Kinetochore Tracking Reveals Error-Prone Homologous Chromosome Biorientation in Mammalian Oocytes , 2011, Cell.
[12] K. Nasmyth,et al. Rec8-containing cohesin maintains bivalents without turnover during the growing phase of mouse oocytes. , 2010, Genes & development.
[13] J. J. Ward,et al. Condensins Promote Chromosome Recoiling during Early Anaphase to Complete Sister Chromatid Separation , 2010, Developmental cell.
[14] Ilan Davis,et al. Cohesin cleavage and Cdk inhibition trigger formation of daughter nuclei , 2010, Nature Cell Biology.
[15] Jesse C. Gatlin,et al. Condensin regulates the stiffness of vertebrate centromeres. , 2009, Molecular biology of the cell.
[16] A. Lamond,et al. Condensin and Repo-Man–PP1 co-operate in the regulation of chromosome architecture during mitosis , 2006, Nature Cell Biology.
[17] J. Ellenberg,et al. Condensin I Stabilizes Chromosomes Mechanically through a Dynamic Interaction in Live Cells , 2006, Current Biology.
[18] C. Sunkel,et al. The Condensin I Subunit Barren/CAP-H Is Essential for the Structural Integrity of Centromeric Heterochromatin during Mitosis , 2005, Molecular and Cellular Biology.
[19] J. Ellenberg,et al. Distinct functions of condensin I and II in mitotic chromosome assembly , 2004, Journal of Cell Science.
[20] A. Cooney,et al. Differential Oocyte-Specific Expression of Cre Recombinase Activity in GDF-9-iCre, Zp3cre, and Msx2Cre Transgenic Mice1 , 2004, Biology of reproduction.
[21] B. Houchmandzadeh,et al. The Mitotic Chromosome Is an Assembly of Rigid Elastic Axes Organized by Structural Maintenance of Chromosomes (SMC) Proteins and Surrounded by a Soft Chromatin Envelope* , 2004, Journal of Biological Chemistry.
[22] A. F. Neuwald,et al. Differential Contributions of Condensin I and Condensin II to Mitotic Chromosome Architecture in Vertebrate Cells , 2003, Cell.
[23] B. Maro,et al. Metaphase I Arrest upon Activation of the Mad2-Dependent Spindle Checkpoint in Mouse Oocytes , 2003, Current Biology.
[24] R. Gassmann,et al. Condensin is required for nonhistone protein assembly and structural integrity of vertebrate mitotic chromosomes. , 2003, Developmental cell.
[25] Sebastian Maurer-Stroh,et al. Kleisins: a superfamily of bacterial and eukaryotic SMC protein partners. , 2003, Molecular cell.
[26] R. Behringer,et al. Manipulating the Mouse Embryo: A Laboratory Manual , 2002 .
[27] Kim Nasmyth,et al. Segregating Sister Genomes: The Molecular Biology of Chromosome Separation , 2002, Science.
[28] 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.
[29] A. Murray,et al. Mutation of YCS4, a budding yeast condensin subunit, affects mitotic and nonmitotic chromosome behavior. , 2002, Molecular biology of the cell.
[30] J. Marko,et al. Micromechanical studies of mitotic chromosomes. , 2002, Journal of muscle research and cell motility.
[31] K. Helin,et al. Mad2 binding to Mad1 and Cdc20, rather than oligomerization, is required for the spindle checkpoint , 2001, The EMBO journal.
[32] C. Sunkel,et al. A role for Drosophila SMC4 in the resolution of sister chromatids in mitosis , 2001, Current Biology.
[33] K. Nasmyth. THE GENOME : Joining , Resolving , and Separating Sister Chromatids During Mitosis and Meiosis , 2006 .
[34] D. Koshland,et al. Mitotic chromosome condensation requires Brn1p, the yeast homologue of Barren. , 2000, Molecular biology of the cell.
[35] D. Chatenay,et al. Reversible and irreversible unfolding of mitotic newt chromosomes by applied force. , 2000, Molecular biology of the cell.
[36] M. Yanagida,et al. Fission yeast condensin complex: essential roles of non-SMC subunits for condensation and Cdc2 phosphorylation of Cut3/SMC4. , 1999, Genes & development.
[37] J. Lieb,et al. MIX-1: An Essential Component of the C. elegans Mitotic Machinery Executes X Chromosome Dosage Compensation , 1998, Cell.
[38] R. Kobayashi,et al. Condensins, Chromosome Condensation Protein Complexes Containing XCAP-C, XCAP-E and a Xenopus Homolog of the Drosophila Barren Protein , 1997, Cell.
[39] Nicklas Rb. How Cells Get the Right Chromosomes , 1997, Science.
[40] R. Nicklas. How Cells Get the Right Chromosomes , 1997, Science.
[41] H. Bellen,et al. Chromatid Segregation at Anaphase Requires the barren Product, a Novel Chromosome-Associated Protein That Interacts with Topoisomerase II , 1996, Cell.
[42] D. Koshland,et al. SMC2, a Saccharomyces cerevisiae gene essential for chromosome segregation and condensation, defines a subgroup within the SMC family. , 1995, Genes & development.
[43] T. Mitchison,et al. A heterodimeric coiled-coil protein required for mitotic chromosome condensation in vitro , 1994, Cell.
[44] M. Yanagida,et al. Fission yeast cut3 and cut14, members of a ubiquitous protein family, are required for chromosome condensation and segregation in mitosis. , 1994, The EMBO journal.
[45] T. Cremer,et al. Rapid interphase and metaphase assessment of specific chromosomal changes in neuroectodermal tumor cells by in situ hybridization with chemically modified DNA probes. , 1988, Experimental cell research.
[46] W. Flemming. Beiträge zur Kenntniss der Zelle und Ihrer Lebenserscheinungen , 1880 .