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| Open AccessSH2D4A promotes centrosome maturation to support spindle microtubule formation and mitotic progression
- Ryuzaburo Yuki
- , Yuki Ikeda
- & Yuji Nakayama
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| Open AccessSequential accumulation of dynein and its regulatory proteins at the spindle region in the Caenorhabditis elegans embryo
- Takayuki Torisawa
- & Akatsuki Kimura
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| Open AccessCharacterization of a recently synthesized microtubule-targeting compound that disrupts mitotic spindle poles in human cells
- Dilan Boodhai Jaunky
- , Kevin Larocque
- & Alisa Piekny
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| Open AccessA novel synthetic microtubule inhibitor exerts antiproliferative effects in multidrug resistant cancer cells and cancer stem cells
- Mina Park
- , Jee Won Hwang
- & Yong Kee Kim
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| Open AccessSET/TAF1 forms a distance-dependent feedback loop with Aurora B and Bub1 as a tension sensor at centromeres
- Yuichiro Asai
- , Rieko Matsumura
- & Yasuhiko Terada
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| Open AccessSmall molecule allosteric uncoupling of microtubule depolymerase activity from motility in human Kinesin-5 during mitotic spindle assembly
- Catherine D. Kim
- , Elizabeth D. Kim
- & Edward J. Wojcik
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| Open AccessToxoplasma gondii-induced host cellular cell cycle dysregulation is linked to chromosome missegregation and cytokinesis failure in primary endothelial host cells
- Zahady D. Velásquez
- , Iván Conejeros
- & Anja Taubert
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| Open AccessIFT88 controls NuMA enrichment at k-fibers minus-ends to facilitate their re-anchoring into mitotic spindles
- Nicolas Taulet
- , Audrey Douanier
- & Benedicte Delaval
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| Open AccessFunctional Analysis of Human Pathological Semen Samples in an Oocyte Cytoplasmic Ex Vivo System
- Farners Amargant
- , Désirée García
- & Isabelle Vernos
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| Open AccessEml1 loss impairs apical progenitor spindle length and soma shape in the developing cerebral cortex
- Sara Bizzotto
- , Ana Uzquiano
- & Fiona Francis
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| Open AccessMitotic slippage and the subsequent cell fates after inhibition of Aurora B during tubulin-binding agent–induced mitotic arrest
- Yasuo Tsuda
- , Makoto Iimori
- & Yoshihiko Maehara
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| Open AccessAkap350 Recruits Eb1 to The Spindle Poles, Ensuring Proper Spindle Orientation and Lumen Formation in 3d Epithelial Cell Cultures
- Evangelina Almada
- , Facundo M. Tonucci
- & M. Cecilia Larocca
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| Open AccessPalladin is a novel microtubule-associated protein responsible for spindle orientation
- Xiang Zhang
- , Xinlei Chen
- & Saijuan Chen
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| Open AccessDevelopmentally Regulated GTP binding protein 1 (DRG1) controls microtubule dynamics
- Anna Katharina Schellhaus
- , Daniel Moreno-Andrés
- & Wolfram Antonin
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| Open AccessCalcium depletion destabilises kinetochore fibres by the removal of CENP-F from the kinetochore
- Rinyaporn Phengchat
- , Hideaki Takata
- & Kiichi Fukui
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| Open AccessA role for core planar polarity proteins in cell contact-mediated orientation of planar cell division across the mammalian embryonic skin
- Fazal Oozeer
- , Laura L. Yates
- & Caroline J. Formstone
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| Open AccessSpindle pole cohesion requires glycosylation-mediated localization of NuMA
- Jérémy Magescas
- , Lucie Sengmanivong
- & Delphine Delacour
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| Open AccessThe Light Intermediate Chain 2 Subpopulation of Dynein Regulates Mitotic Spindle Orientation
- Sagar Mahale
- , Megha Kumar
- & Sivaram V. S. Mylavarapu
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| Open AccessKinesin-5 Contributes to Spindle-length Scaling in the Evolution of Cancer toward Metastasis
- Ching-Feng Yang
- , Wan-Yu Tsai
- & Hsiao-Chun Huang
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| Open AccessFocal adhesions control cleavage furrow shape and spindle tilt during mitosis
- Nilay Taneja
- , Aidan M. Fenix
- & Dylan T. Burnette
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| Open AccessMitotic genes are transcriptionally upregulated in the fibroblast irradiated with very low doses of UV-C
- Seiji Takeuchi
- , Toshiro Matsuda
- & Chikako Nishigori
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| Open AccessCep70 overexpression stimulates pancreatic cancer by inducing centrosome abnormality and microtubule disorganization
- Songbo Xie
- , Juan Qin
- & Min Liu
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| Open AccessNuSAP modulates the dynamics of kinetochore microtubules by attenuating MCAK depolymerisation activity
- Chenyu Li
- , Yajun Zhang
- & Yih-Cherng Liou
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| Open AccessMitotic Spindle Disruption by Alternating Electric Fields Leads to Improper Chromosome Segregation and Mitotic Catastrophe in Cancer Cells
- Moshe Giladi
- , Rosa S Schneiderman
- & Yoram Palti
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| Open AccessRegulation of NDR1 activity by PLK1 ensures proper spindle orientation in mitosis
- Maomao Yan
- , Lingluo Chu
- & Xuebiao Yao
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| Open AccessA sensitised RNAi screen reveals a ch-TOG genetic interaction network required for spindle assembly
- Alexis R. Barr
- & Chris Bakal
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| Open AccessIntegrin-Linked Kinase links Dynactin-1/Dynactin-2 with cortical Integrin receptors to orient the mitotic spindle relative to the substratum
- Edward James Morris
- , Kiran Assi
- & Shoukat Dedhar
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| Open AccessChromosome position at the spindle equator is regulated by chromokinesin and a bipolar microtubule array
- Jun Takagi
- , Takeshi Itabashi
- & Shin'ichi Ishiwata