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Summary Anatomy Item Literature (1011) Expression Attributions Wiki
XB-ANAT-3717

Papers associated with mitotic spindle

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Checkpoint signals in grasshopper meiosis are sensitive to microtubule attachment, but tension is still essential., Nicklas RB., J Cell Sci. December 1, 2001; 114 (Pt 23): 4173-83.


Presence of a nucleus or nucleus-deriving factors is indispensable for the formation of the spindle, the diastema and the cleavage furrow in the blastomere of the Xenopus embryo., Wakabayashi Y., Dev Growth Differ. December 1, 2001; 43 (6): 633-46.


Mad2 binding to Mad1 and Cdc20, rather than oligomerization, is required for the spindle checkpoint., Sironi L., EMBO J. November 15, 2001; 20 (22): 6371-82.


The Caenorhabditis elegans polarity gene ooc-5 encodes a Torsin-related protein of the AAA ATPase superfamily., Basham SE., Development. November 1, 2001; 128 (22): 4645-56.


The mitotic spindle: a self-made machine., Karsenti E., Science. October 19, 2001; 294 (5542): 543-7.


mei-41 and bub1 block mitosis at two distinct steps in response to incomplete DNA replication in Drosophila embryos., Garner M., Curr Biol. October 16, 2001; 11 (20): 1595-9.


New B-type cyclin synthesis is required between meiosis I and II during Xenopus oocyte maturation., Hochegger H., Development. October 1, 2001; 128 (19): 3795-807.


Eg5 is static in bipolar spindles relative to tubulin: evidence for a static spindle matrix., Kapoor TM., J Cell Biol. September 17, 2001; 154 (6): 1125-33.                


Searching for a spindle matrix., Wells WA., J Cell Biol. September 17, 2001; 154 (6): 1102-4.    


The pathway of MAP kinase mediation of CSF arrest in Xenopus oocytes., Maller JL., Biol Cell. September 1, 2001; 93 (1-2): 27-33.


Regulation of cell polarity, radial intercalation and epiboly in Xenopus: novel roles for integrin and fibronectin., Marsden M., Development. September 1, 2001; 128 (18): 3635-47.                        


Control of microtubule dynamics by Stu2p is essential for spindle orientation and metaphase chromosome alignment in yeast., Kosco KA., Mol Biol Cell. September 1, 2001; 12 (9): 2870-80.


Securin is not required for cellular viability, but is required for normal growth of mouse embryonic fibroblasts., Mei J., Curr Biol. August 7, 2001; 11 (15): 1197-201.


Mad2-Independent inhibition of APCCdc20 by the mitotic checkpoint protein BubR1., Tang Z., Dev Cell. August 1, 2001; 1 (2): 227-37.


XMog1, a nuclear ran-binding protein in Xenopus, is a functional homologue of Schizosaccharomyces pombe mog1p that co-operates with RanBP1 to control generation of Ran-GTP., Nicolás FJ., J Cell Sci. August 1, 2001; 114 (Pt 16): 3013-23.


Inhibition of Cdh1-APC by the MAD2-related protein MAD2L2: a novel mechanism for regulating Cdh1., Pfleger CM., Genes Dev. July 15, 2001; 15 (14): 1759-64.


Mps1 is a kinetochore-associated kinase essential for the vertebrate mitotic checkpoint., Abrieu A., Cell. July 13, 2001; 106 (1): 83-93.


Crystal structure of the mitotic spindle kinesin Eg5 reveals a novel conformation of the neck-linker., Turner J., J Biol Chem. July 6, 2001; 276 (27): 25496-502.


Fission yeast ch-TOG/XMAP215 homologue Alp14 connects mitotic spindles with the kinetochore and is a component of the Mad2-dependent spindle checkpoint., Garcia MA., EMBO J. July 2, 2001; 20 (13): 3389-401.


Msps/XMAP215 interacts with the centrosomal protein D-TACC to regulate microtubule behaviour., Lee MJ., Nat Cell Biol. July 1, 2001; 3 (7): 643-9.


Differential effect of two stathmin/Op18 phosphorylation mutants on Xenopus embryo development., Küntziger T., J Biol Chem. June 22, 2001; 276 (25): 22979-84.


Think globally, translate locally: what mitotic spindles and neuronal synapses have in common., Richter JD., Proc Natl Acad Sci U S A. June 19, 2001; 98 (13): 7069-71.


Spindle checkpoint protein Bub1 is required for kinetochore localization of Mad1, Mad2, Bub3, and CENP-E, independently of its kinase activity., Sharp-Baker H., J Cell Biol. June 11, 2001; 153 (6): 1239-50.                  


INCENP is required for proper targeting of Survivin to the centromeres and the anaphase spindle during mitosis., Wheatley SP., Curr Biol. June 5, 2001; 11 (11): 886-90.


The non-catalytic domain of the Xenopus laevis auroraA kinase localises the protein to the centrosome., Giet R., J Cell Sci. June 1, 2001; 114 (Pt 11): 2095-104.


Chromatin docking and exchange activity enhancement of RCC1 by histones H2A and H2B., Nemergut ME., Science. May 25, 2001; 292 (5521): 1540-3.


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.


The schedule of destruction of three mitotic cyclins can dictate the timing of events during exit from mitosis., Parry DH., Curr Biol. May 1, 2001; 11 (9): 671-83.


Mitotic spindle assembly in vitro., Merlie J., Curr Protoc Cell Biol. May 1, 2001; Chapter 11 Unit 11.13.


Hyaluronan reduces migration and proliferation in CHO cells., Dübe B., Biochim Biophys Acta. April 23, 2001; 1538 (2-3): 283-9.


Ran GTPase cycle: oOne mechanism -- two functions., Melchior F., Curr Biol. April 3, 2001; 11 (7): R257-60.


Activation of the anaphase-promoting complex and degradation of cyclin B is not required for progression from Meiosis I to II in Xenopus oocytes., Taieb FE., Curr Biol. April 3, 2001; 11 (7): 508-13.


Regulation of Op18 during spindle assembly in Xenopus egg extracts., Budde PP., J Cell Biol. April 2, 2001; 153 (1): 149-58.              


Changes in organization of the endoplasmic reticulum during Xenopus oocyte maturation and activation., Terasaki M., Mol Biol Cell. April 1, 2001; 12 (4): 1103-16.


Cell cycle. Some importin news about spindle assembly., Kahana JA., Science. March 2, 2001; 291 (5509): 1718-9.


Ran-GTP coordinates regulation of microtubule nucleation and dynamics during mitotic-spindle assembly., Carazo-Salas RE., Nat Cell Biol. March 1, 2001; 3 (3): 228-34.


Ran stimulates spindle assembly by altering microtubule dynamics and the balance of motor activities., Wilde A., Nat Cell Biol. March 1, 2001; 3 (3): 221-7.


Bub1 is activated by the protein kinase p90(Rsk) during Xenopus oocyte maturation., Schwab MS., Curr Biol. February 6, 2001; 11 (3): 141-50.  


Role of importin-beta in coupling Ran to downstream targets in microtubule assembly., Wiese C., Science. January 26, 2001; 291 (5504): 653-6.


Functional involvement of Xenopus LIM kinases in progression of oocyte maturation., Takahashi T., Dev Biol. January 15, 2001; 229 (2): 554-67.


Importin beta is a mitotic target of the small GTPase Ran in spindle assembly., Nachury MV., Cell. January 12, 2001; 104 (1): 95-106.


Ran induces spindle assembly by reversing the inhibitory effect of importin alpha on TPX2 activity., Gruss OJ., Cell. January 12, 2001; 104 (1): 83-93.


Methods for the study of centrosome-independent spindle assembly in Xenopus extracts., Wignall SM., Methods Cell Biol. January 1, 2001; 67 241-56.


In vitro approaches for the study of microtubule nucleation at the fission yeast spindle pole body., Masuda H., Methods Cell Biol. January 1, 2001; 67 167-77.


Responses to DNA damage in Xenopus: cell death or cell cycle arrest., Greenwood J., Novartis Found Symp. January 1, 2001; 237 221-30; discussion 230-4.


The use of dominant negative mutants to study the function of mitotic motors in the in vitro spindle assembly assay in Xenopus egg extracts., Boleti H., Methods Mol Biol. January 1, 2001; 164 173-89.


Identification of ribonucleotide reductase protein R1 as an activator of microtubule nucleation in Xenopus egg mitotic extracts., Takada S., Mol Biol Cell. December 1, 2000; 11 (12): 4173-87.


CPEB, maskin, and cyclin B1 mRNA at the mitotic apparatus: implications for local translational control of cell division., Groisman I., Cell. October 27, 2000; 103 (3): 435-47.        


CENP-E as an essential component of the mitotic checkpoint in vitro., Abrieu A., Cell. September 15, 2000; 102 (6): 817-26.


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.

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