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Summary Anatomy Item Literature (6354) Expression Attributions Wiki
XB-ANAT-254

Papers associated with oocyte (and plk1)

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Unraveling the interplay between PKA inhibition and Cdk1 activation during oocyte meiotic maturation., Santoni M., Cell Rep. February 27, 2024; 43 (2): 113782.                  


Revisiting the multisite phosphorylation that produces the M-phase supershift of key mitotic regulators., Tan T., Mol Biol Cell. October 1, 2022; 33 (12): ar115.                                                      


Membrane progesterone receptor induces meiosis in Xenopus oocytes through endocytosis into signaling endosomes and interaction with APPL1 and Akt2., Nader N., PLoS Biol. November 2, 2020; 18 (11): e3000901.          


Claspin - checkpoint adaptor and DNA replication factor., Smits VAJ., FEBS J. February 1, 2019; 286 (3): 441-455.


Correction: Polo-like kinase confers MPF autoamplification competence to growing Xenopus oocytes (doi:10.1242/dev.01050)., Karaiskou A., Development. July 30, 2018; 145 (14):           


Phosphorylation Dynamics Dominate the Regulated Proteome during Early Xenopus Development., Peuchen EH., Sci Rep. November 15, 2017; 7 (1): 15647.                          


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                                                             


Structural basis for recognition of Emi2 by Polo-like kinase 1 and development of peptidomimetics blocking oocyte maturation and fertilization., Jia JL., Sci Rep. October 13, 2015; 5 14626.          


Targeting Echinococcus multilocularis stem cells by inhibition of the Polo-like kinase EmPlk1., Schubert A., PLoS Negl Trop Dis. June 5, 2014; 8 (6): e2870.            


Phosphorylation of ARPP19 by protein kinase A prevents meiosis resumption in Xenopus oocytes., Dupré A., Nat Commun. January 1, 2014; 5 3318.            


A dynamical model of oocyte maturation unveils precisely orchestrated meiotic decisions., Pfeuty B., PLoS Comput Biol. January 1, 2012; 8 (1): e1002329.              


SmSak, the second Polo-like kinase of the helminth parasite Schistosoma mansoni: conserved and unexpected roles in meiosis., Long T., PLoS One. January 1, 2012; 7 (6): e40045.              


Greatwall kinase and cyclin B-Cdk1 are both critical constituents of M-phase-promoting factor., Hara M., Nat Commun. January 1, 2012; 3 1059.              


Mouse Emi2 as a distinctive regulatory hub in second meiotic metaphase., Suzuki T., Development. October 1, 2010; 137 (19): 3281-91.            


Schistosoma mansoni Polo-like kinase 1: A mitotic kinase with key functions in parasite reproduction., Long T., Int J Parasitol. August 1, 2010; 40 (9): 1075-86.


Emi2 inhibition of the anaphase-promoting complex/cyclosome absolutely requires Emi2 binding via the C-terminal RL tail., Ohe M., Mol Biol Cell. March 15, 2010; 21 (6): 905-13.            


Phosphorylation of TPX2 by Plx1 enhances activation of Aurora A., Eckerdt F., Cell Cycle. August 1, 2009; 8 (15): 2413-9.


Roles of Greatwall kinase in the regulation of cdc25 phosphatase., Zhao Y., Mol Biol Cell. April 1, 2008; 19 (4): 1317-27.                        


Mechanism of degradation of CPEB during Xenopus oocyte maturation., Setoyama D., Proc Natl Acad Sci U S A. November 13, 2007; 104 (46): 18001-6.


DNA replication checkpoint control of Wee1 stability by vertebrate Hsl7., Yamada A., J Cell Biol. December 6, 2004; 167 (5): 841-9.              


Timing of Plk1 and MPF activation during porcine oocyte maturation., Anger M., Mol Reprod Dev. September 1, 2004; 69 (1): 11-6.


A feedback loop in the polo-like kinase activation pathway., Erikson E., J Biol Chem. July 30, 2004; 279 (31): 32219-24.


Polo-like kinase confers MPF autoamplification competence to growing Xenopus oocytes., Karaiskou A., Development. April 1, 2004; 131 (7): 1543-52.              


Cdc5 influences phosphorylation of Net1 and disassembly of the RENT complex., Shou W., BMC Mol Biol. April 17, 2002; 3 3.              


Cloning and characterization of Plx2 and Plx3, two additional Polo-like kinases from Xenopus laevis., Duncan PI., Exp Cell Res. October 15, 2001; 270 (1): 78-87.


The polo-like kinase Plx1 is required for activation of the phosphatase Cdc25C and cyclin B-Cdc2 in Xenopus oocytes., Qian YW., Mol Biol Cell. June 1, 2001; 12 (6): 1791-9.


Interplay between Cdc2 kinase and the c-Mos/MAPK pathway between metaphase I and metaphase II in Xenopus oocytes., Frank-Vaillant M., Dev Biol. March 1, 2001; 231 (1): 279-88.


Ste20-like kinase (SLK), a regulatory kinase for polo-like kinase (Plk) during the G2/M transition in somatic cells., Ellinger-Ziegelbauer H., Genes Cells. June 1, 2000; 5 (6): 491-8.


The critical role of the MAP kinase pathway in meiosis II in Xenopus oocytes is mediated by p90(Rsk)., Gross SD., Curr Biol. April 20, 2000; 10 (8): 430-8.


The activation of MAP kinase and p34cdc2/cyclin B during the meiotic maturation of Xenopus oocytes., Palmer A., Prog Cell Cycle Res. January 1, 2000; 4 131-43.


Phosphatase 2A and polo kinase, two antagonistic regulators of cdc25 activation and MPF auto-amplification., Karaïskou A., J Cell Sci. November 1, 1999; 112 ( Pt 21) 3747-56.


A p90(rsk) mutant constitutively interacting with MAP kinase uncouples MAP kinase from p34(cdc2)/cyclin B activation in Xenopus oocytes., Gavin AC., Mol Biol Cell. September 1, 1999; 10 (9): 2971-86.


MPF amplification in Xenopus oocyte extracts depends on a two-step activation of cdc25 phosphatase., Karaïskou A., Exp Cell Res. November 1, 1998; 244 (2): 491-500.


Activated polo-like kinase Plx1 is required at multiple points during mitosis in Xenopus laevis., Qian YW., Mol Cell Biol. July 1, 1998; 18 (7): 4262-71.

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