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Summary Anatomy Item Literature (4863) Expression Attributions Wiki
XB-ANAT-511

Papers associated with nerve (and cdk1)

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Similarity in gene-regulatory networks suggests that cancer cells share characteristics of embryonic neural cells., Zhang Z., J Biol Chem. August 4, 2017; 292 (31): 12842-12859.        


CPEB4 is regulated during cell cycle by ERK2/Cdk1-mediated phosphorylation and its assembly into liquid-like droplets., Guillén-Boixet J., Elife. November 1, 2016; 5                                                             


Genome evolution in the allotetraploid frog Xenopus laevis., Session AM., Nature. October 20, 2016; 538 (7625): 336-343.                              


Flexibility vs. robustness in cell cycle regulation of timing of M-phase entry in Xenopus laevis embryo cell-free extract., Debowski M., Int J Dev Biol. January 1, 2016; 60 (7-8-9): 305-314.    


Autoinhibition and Polo-dependent multisite phosphorylation restrict activity of the histone H3 kinase Haspin to mitosis., Ghenoiu C., Mol Cell. December 12, 2013; 52 (5): 734-45.


Mitotic trigger waves and the spatial coordination of the Xenopus cell cycle., Chang JB., Nature. August 29, 2013; 500 (7464): 603-7.                


Protein phosphatase 2A controls the order and dynamics of cell-cycle transitions., Krasinska L., Mol Cell. November 4, 2011; 44 (3): 437-50.


Monoclonal antibodies against Xenopus greatwall kinase., Wang L., Hybridoma (Larchmt). October 1, 2011; 30 (5): 469-74.


Actin behavior in bulk cytoplasm is cell cycle regulated in early vertebrate embryos., Field CM., J Cell Sci. June 15, 2011; 124 (Pt 12): 2086-95.


Replication origins and timing of temporal replication in budding yeast: how to solve the conundrum?, Barberis M., Curr Genomics. May 1, 2010; 11 (3): 199-211.          


Fine tuning the cell cycle: activation of the Cdk1 inhibitory phosphorylation pathway during mitotic exit., Potapova TA., Mol Biol Cell. March 1, 2009; 20 (6): 1737-48.


Effects of thioglycolic acid on progesterone-induced maturation of Xenopus oocytes., Zhang L., J Toxicol Environ Health A. January 1, 2009; 72 (19): 1123-31.


Identification of CUG-BP1/EDEN-BP target mRNAs in Xenopus tropicalis., Graindorge A., Nucleic Acids Res. April 1, 2008; 36 (6): 1861-70.          


Temporal regulation of embryonic M-phases., Kubiak JZ., Folia Histochem Cytobiol. January 1, 2008; 46 (1): 5-9.


TIS21 (/BTG2/PC3) as a link between ageing and cancer: cell cycle regulator and endogenous cell death molecule., Lim IK., J Cancer Res Clin Oncol. July 1, 2006; 132 (7): 417-26.


Survivin increased vascular development during Xenopus ontogenesis., Du Pasquier D., Differentiation. June 1, 2006; 74 (5): 244-53.              


Intracellular acidification delays hormonal G2/M transition and inhibits G2/M transition triggered by thiophosphorylated MAPK in Xenopus oocytes., Sellier C., J Cell Biochem. May 15, 2006; 98 (2): 287-300.


Aurora A, mitotic entry, and spindle bipolarity., Liu Q., Proc Natl Acad Sci U S A. April 11, 2006; 103 (15): 5811-6.


M-phase MELK activity is regulated by MPF and MAPK., Badouel C., Cell Cycle. April 1, 2006; 5 (8): 883-9.


A role for PP1 in the Cdc2/Cyclin B-mediated positive feedback activation of Cdc25., Margolis SS., Mol Biol Cell. April 1, 2006; 17 (4): 1779-89.


ORC is necessary at the interphase-to-mitosis transition to recruit cdc2 kinase and disassemble RPA foci., Cuvier O., Curr Biol. March 7, 2006; 16 (5): 516-23.


Changes in regulatory phosphorylation of Cdc25C Ser287 and Wee1 Ser549 during normal cell cycle progression and checkpoint arrests., Stanford JS., Mol Biol Cell. December 1, 2005; 16 (12): 5749-60.


Multiple phosphorylation events control mitotic degradation of the muscle transcription factor Myf5., Doucet C., BMC Biochem. September 28, 2005; 6 27.                


Differences in regulation of the first two M-phases in Xenopus laevis embryo cell-free extracts., Chesnel F., Dev Biol. September 15, 2005; 285 (2): 358-75.          


Over-expression of Aurora-A targets cytoplasmic polyadenylation element binding protein and promotes mRNA polyadenylation of Cdk1 and cyclin B1., Sasayama T., Genes Cells. July 1, 2005; 10 (7): 627-38.          


The distinct stage-specific effects of 2-(p-amylcinnamoyl)amino-4-chlorobenzoic acid on the activation of MAP kinase and Cdc2 kinase in Xenopus oocyte maturation., Islam A., Cell Signal. April 1, 2005; 17 (4): 507-23.


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.


Cdk2 activity is essential for the first to second meiosis transition in porcine oocytes., Sugiura K., J Reprod Dev. February 1, 2005; 51 (1): 143-9.


Measurement of Wee kinase activity., Mueller PR., Methods Mol Biol. January 1, 2005; 296 299-328.


Scc2 couples replication licensing to sister chromatid cohesion in Xenopus egg extracts., Gillespie PJ., Curr Biol. September 7, 2004; 14 (17): 1598-603.


Mos mediates the mitotic activation of p42 MAPK in Xenopus egg extracts., Yue J., Curr Biol. September 7, 2004; 14 (17): 1581-6.


Role of Polo-like kinase in the degradation of early mitotic inhibitor 1, a regulator of the anaphase promoting complex/cyclosome., Moshe Y., Proc Natl Acad Sci U S A. May 25, 2004; 101 (21): 7937-42.


Phosphorylation of CDC25B by Aurora-A at the centrosome contributes to the G2-M transition., Dutertre S., J Cell Sci. May 15, 2004; 117 (Pt 12): 2523-31.


Cyclin A/Cdk2 complexes regulate activation of Cdk1 and Cdc25 phosphatases in human cells., Mitra J., Oncogene. April 22, 2004; 23 (19): 3361-7.


How does Xenopus oocyte acquire its competence to undergo meiotic maturation?, Jessus C., Biol Cell. April 1, 2004; 96 (3): 187-92.


Regulation of binding of lamin B receptor to chromatin by SR protein kinase and cdc2 kinase in Xenopus egg extracts., Takano M., J Biol Chem. March 26, 2004; 279 (13): 13265-71.


Activation of Cdc2 kinase during meiotic maturation of axolotl oocyte., Vaur S., Dev Biol. March 15, 2004; 267 (2): 265-78.


Homologue disjunction in mouse oocytes requires proteolysis of securin and cyclin B1., Herbert M., Nat Cell Biol. November 1, 2003; 5 (11): 1023-5.


Regulation of Cdc2/cyclin B activation in Xenopus egg extracts via inhibitory phosphorylation of Cdc25C phosphatase by Ca(2+)/calmodulin-dependent protein [corrected] kinase II., Hutchins JR., Mol Biol Cell. October 1, 2003; 14 (10): 4003-14.


A kinetic model of the cyclin E/Cdk2 developmental timer in Xenopus laevis embryos., Ciliberto A., Biophys Chem. July 1, 2003; 104 (3): 573-89.


Regulation of EDEN-dependent deadenylation of Aurora A/Eg2-derived mRNA via phosphorylation and dephosphorylation in Xenopus laevis egg extracts., Detivaud L., J Cell Sci. July 1, 2003; 116 (Pt 13): 2697-705.              


Cdc2-cyclin B triggers H3 kinase activation of Aurora-A in Xenopus oocytes., Maton G., J Biol Chem. June 13, 2003; 278 (24): 21439-49.


Dual phosphorylation controls Cdc25 phosphatases and mitotic entry., Bulavin DV., Nat Cell Biol. June 1, 2003; 5 (6): 545-51.


Deregulation of Cdc2 kinase induces caspase-3 activation and apoptosis., Gu L., Biochem Biophys Res Commun. March 7, 2003; 302 (2): 384-91.          


Phosphorylation of the cyclin b1 cytoplasmic retention sequence by mitogen-activated protein kinase and Plx., Walsh S., Mol Cancer Res. February 1, 2003; 1 (4): 280-9.


DIF-1, an anti-tumor substance found in Dictyostelium discoideum, inhibits progesterone-induced oocyte maturation in Xenopus laevis., Kubohara Y., Eur J Pharmacol. January 24, 2003; 460 (2-3): 93-8.


G2 arrest in Xenopus oocytes depends on phosphorylation of cdc25 by protein kinase A., Duckworth BC., Proc Natl Acad Sci U S A. December 24, 2002; 99 (26): 16794-9.


Roles of aurora-A kinase in mitotic entry and G2 checkpoint in mammalian cells., Marumoto T., Genes Cells. November 1, 2002; 7 (11): 1173-82.            


Co-ordinating retinal histogenesis: early cell cycle exit enhances early cell fate determination in the Xenopus retina., Ohnuma S., Development. May 1, 2002; 129 (10): 2435-46.            


Regulation of microtubule organization during interphase and M phase., Shiina N., Cell Struct Funct. October 1, 1999; 24 (5): 385-91.

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