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Summary Anatomy Item Literature (91) Expression Attributions Wiki
XB-ANAT-3542

Papers associated with mitotic cell

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The age-regulated zinc finger factor ZNF367 is a new modulator of neuroblast proliferation during embryonic neurogenesis., Naef V., Sci Rep. August 7, 2018; 8 (1): 11836.                      


Heart regeneration in adult Xenopus tropicalis after apical resection., Liao S., Cell Biosci. December 13, 2017; 7 70.                


Gamma-tubulin coordinates nuclear envelope assembly around chromatin., Rosselló CA., Heliyon. September 24, 2016; 2 (9): e00166.                                        


The evolution of basal progenitors in the developing non-mammalian brain., Nomura T., Development. January 1, 2016; 143 (1): 66-74.          


The Inner Nuclear Membrane Protein Nemp1 Is a New Type of RanGTP-Binding Protein in Eukaryotes., Shibano T., PLoS One. May 6, 2015; 10 (5): e0127271.                                


Sulf1 influences the Shh morphogen gradient during the dorsal ventral patterning of the neural tube in Xenopus tropicalis., Ramsbottom SA., Dev Biol. July 15, 2014; 391 (2): 207-18.                  


Changes in oscillatory dynamics in the cell cycle of early Xenopus laevis embryos., Tsai TY., PLoS Biol. February 1, 2014; 12 (2): e1001788.              


Aven is dynamically regulated during Xenopus oocyte maturation and is required for oocyte survival., O'Shea L., Cell Death Dis. November 7, 2013; 4 e908.        


Modulation of cell cycle control during oocyte-to-embryo transitions., Hörmanseder E., EMBO J. August 14, 2013; 32 (16): 2191-203.


The nuclear F-actin interactome of Xenopus oocytes reveals an actin-bundling kinesin that is essential for meiotic cytokinesis., Samwer M., EMBO J. July 3, 2013; 32 (13): 1886-902.              


The APC/C inhibitor XErp1/Emi2 is essential for Xenopus early embryonic divisions., Tischer T., Science. October 26, 2012; 338 (6106): 520-4.


Spindle position in symmetric cell divisions during epiboly is controlled by opposing and dynamic apicobasal forces., Woolner S., Dev Cell. April 17, 2012; 22 (4): 775-87.                          


Identification and characterization of plant Haspin kinase as a histone H3 threonine kinase., Kurihara D., BMC Plant Biol. April 28, 2011; 11 73.              


Dynamic regulation of Oct1 during mitosis by phosphorylation and ubiquitination., Kang J., PLoS One. January 1, 2011; 6 (8): e23872.              


Mitotic cell-cycle progression is regulated by CPEB1 and CPEB4-dependent translational control., Novoa I., Nat Cell Biol. May 1, 2010; 12 (5): 447-56.


Geminin stabilizes Cdt1 during meiosis in Xenopus oocytes., Narasimhachar Y., J Biol Chem. October 2, 2009; 284 (40): 27235-42.


Vesicular stomatitis virus inhibits mitotic progression and triggers cell death., Chakraborty P., EMBO Rep. October 1, 2009; 10 (10): 1154-60.


Responding to chromosomal breakage during M-phase: insights from a cell-free system., Smith E., Cell Div. July 14, 2009; 4 15.  


Antiapoptotic role for ornithine decarboxylase during oocyte maturation., Zhou Y., Mol Cell Biol. April 1, 2009; 29 (7): 1786-95.


Non-catalytic function for ATR in the checkpoint response., McSherry TD., Cell Cycle. August 15, 2007; 6 (16): 2019-30.


The E3 ubiquitin ligase skp2 regulates neural differentiation independent from the cell cycle., Boix-Perales H., Neural Dev. March 15, 2007; 2 27.                      


Mechanism for inactivation of the mitotic inhibitory kinase Wee1 at M phase., Okamoto K., Proc Natl Acad Sci U S A. March 6, 2007; 104 (10): 3753-8.


Absence of reciprocal feedback between MPF and ERK2 MAP kinase in mitotic Xenopus laevis embryo cell-free extract., Bazile F., Cell Cycle. February 15, 2007; 6 (4): 489-96.


Diazonamide toxins reveal an unexpected function for ornithine delta-amino transferase in mitotic cell division., Wang G., Proc Natl Acad Sci U S A. February 13, 2007; 104 (7): 2068-73.


Mathematical modeling as a tool for investigating cell cycle control networks., Sible JC., Methods. February 1, 2007; 41 (2): 238-47.


The anaphase-promoting complex/cyclosome inhibitor Emi2 is essential for meiotic but not mitotic cell cycles., Liu J., J Biol Chem. November 17, 2006; 281 (46): 34736-41.


Time-lapse tracing of mitotic cell divisions in the early Xenopus embryo using microscopic MRI., Papan C., Dev Dyn. November 1, 2006; 235 (11): 3059-62.


Polo-like kinases: a team in control of the division., van de Weerdt BC., Cell Cycle. April 1, 2006; 5 (8): 853-64.


Oocyte extracts for the study of meiotic M-M transition., Ohsumi K., Methods Mol Biol. January 1, 2006; 322 445-58.


A cell cycle arrest is necessary for bottle cell formation in the early Xenopus gastrula: integrating cell shape change, local mitotic control and mesodermal patterning., Kurth T., Mech Dev. December 1, 2005; 122 (12): 1251-65.                  


Aurora A activates D-TACC-Msps complexes exclusively at centrosomes to stabilize centrosomal microtubules., Barros TP., J Cell Biol. September 26, 2005; 170 (7): 1039-46.              


Rewiring the exit from mitosis., Ciliberto A., Cell Cycle. August 1, 2005; 4 (8): 1107-12.


The Polo-like kinase Plx1 interacts with and inhibits Myt1 after fertilization of Xenopus eggs., Inoue D., EMBO J. March 9, 2005; 24 (5): 1057-67.


Characterization of aurora-a in porcine oocytes and early embryos implies its functional roles in the regulation of meiotic maturation, fertilization and cleavage., Yao LJ., Zygote. February 1, 2005; 13 (1): 23-30.


The expression of the aurora-A gene and its significance with tumorgenesis in non-Hodgkin's lymphoma., Yakushijin Y., Leuk Lymphoma. September 1, 2004; 45 (9): 1741-6.


Regulation of Xenopus Aurora A activation by TPX2., Eyers PA., J Biol Chem. March 5, 2004; 279 (10): 9008-15.


Morphogenesis during Xenopus gastrulation requires Wee1-mediated inhibition of cell proliferation., Murakami MS., Development. February 1, 2004; 131 (3): 571-80.      


The Aurora kinases: role in cell transformation and tumorigenesis., Katayama H., Cancer Metastasis Rev. December 1, 2003; 22 (4): 451-64.


The C-terminal seven amino acids in the cytoplasmic retention signal region of cyclin B2 are required for normal bipolar spindle formation in Xenopus oocytes and embryos., Yoshitome S., Mol Cancer Res. June 1, 2003; 1 (8): 589-97.


A mechanism of coupling RCC1 mobility to RanGTP production on the chromatin in vivo., Li HY., J Cell Biol. March 3, 2003; 160 (5): 635-44.          


XPak3 promotes cell cycle withdrawal during primary neurogenesis in Xenopus laevis., Souopgui J., EMBO J. December 2, 2002; 21 (23): 6429-39.


Mos is not required for the initiation of meiotic maturation in Xenopus oocytes., Dupré A., EMBO J. August 1, 2002; 21 (15): 4026-36.


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.


CHMP1 is a novel nuclear matrix protein affecting chromatin structure and cell-cycle progression., Stauffer DR., J Cell Sci. July 1, 2001; 114 (Pt 13): 2383-93.                


Protein kinase C mediates phosphorylation of the regulatory light chain of myosin-II during mitosis., Varlamova O., J Muscle Res Cell Motil. January 1, 2001; 22 (3): 243-50.


c-Mos forces the mitotic cell cycle to undergo meiosis II to produce haploid gametes., Tachibana K., Proc Natl Acad Sci U S A. December 19, 2000; 97 (26): 14301-6.


The polo-like kinase Plx1 prevents premature inactivation of the APC(Fizzy)-dependent pathway in the early Xenopus cell cycle., Brassac T., Oncogene. August 3, 2000; 19 (33): 3782-90.


XCS-1, a maternally expressed gene product involved in regulating mitosis in Xenopus., Nakamura H., J Cell Sci. July 1, 2000; 113 ( Pt 13) 2497-505.                


Differential regulation of the translation and the stability of two maternal transcripts in preimplantation rabbit embryos., Henrion G., Mol Reprod Dev. May 1, 2000; 56 (1): 12-25.


Nek2B, a novel maternal form of Nek2 kinase, is essential for the assembly or maintenance of centrosomes in early Xenopus embryos., Uto K., EMBO J. April 17, 2000; 19 (8): 1816-26.

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