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Polo, Greatwall, and Protein Phosphatase PP2A Jostle for Pole Position


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Vyšlo v časopise: Polo, Greatwall, and Protein Phosphatase PP2A Jostle for Pole Position. PLoS Genet 7(8): e32767. doi:10.1371/journal.pgen.1002213
Kategorie: Perspective
prolekare.web.journal.doi_sk: https://doi.org/10.1371/journal.pgen.1002213

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Zdroje

1. RangoneHWegelEGattMKYeungEFlowersA 2011 Suppression of Scant identifies Endos as a substrate of Greatwall kinase and a negative regulator of Protein Phosphatase 2A in mitosis. PloS Genet 7 e1002225 doi:10.1371/journal.pgen.1002225

2. WangPPinsonXArchambaultV 2011 PP2A-Twins is antagonized by Greatwall and collaborates with Polo for cell cycle progression and centrosome attachment to nuclei in Drosophila embryos. PLoS Genet 7 e1002227 doi:10.1371/journal.pgen.1002227

3. SunkelCEGloverDM 1988 Polo, a mitotic mutant of Drosophila displaying abnormal spindle poles. J Cell Sci 89 25 38

4. ArchambaultVGloverDM 2009 Polo-like kinases: conservation and divergence in their functions and regulation. Nat Rev Mol Cell Biol 10 265 275

5. YuJFlemingSLWilliamsBWilliamsEVLiZ 2004 Greatwall kinase: a nuclear protein required for proper chromosome condensation and mitotic progression in Drosophila. J Cell Biol 164 487 492

6. YuJZhaoYLiZGalasSGoldbergML 2006 Greatwall kinase participates in the Cdc2 autoregulatory loop in Xenopus egg extracts. Mol Cell 22 83 91

7. CastilhoPVWilliamsBCMochidaSZhaoYGoldbergML 2009 The M phase kinase Greatwall (Gwl) promotes inactivation of PP2A/B55delta, a phosphatase directed against CDK phosphosites. Mol Biol Cell 20 4777 4789

8. VigneronSBrioudesEBurgessALabbeJCLorcaT 2009 Greatwall maintains mitosis through regulation of PP2A. EMBO J 28 2786 2793

9. MochidaSHuntT 2007 Calcineurin is required to release Xenopus egg extracts from meiotic M phase. Nature 449 336 340

10. MochidaSIkeoSGannonJHuntT 2009 Regulated activity of PP2A-B55 delta is crucial for controlling entry into and exit from mitosis in Xenopus egg extracts. EMBO J 28 2777 2785

11. SchmitzMHHeldMJanssensVHutchinsJRHudeczO 2010 Live-cell imaging RNAi screen identifies PP2A-B55alpha and importin-beta1 as key mitotic exit regulators in human cells. Nat Cell Biol 12 886 893

12. MochidaSMaslenSSkehelMHuntT 2010 Greatwall phosphorylates an inhibitor of protein phosphatase 2A that is essential for mitosis. Science 330 1670 1673

13. Gharbi-AyachiALabbéJBurgessAVigneronSStrubJ 2010 The substrate of Greatwall kinase, Arpp19, controls mitosis by inhibiting protein phosphatase 2A. Science 330 1673 1677

14. WhitecooperHCarmenaMGonzalezCGloverDM 1996 Mutations in new cell cycle genes that fail to complement a multiply mutant third chromosome of Drosophila. Genetics 144 1097 1111

15. TalarekNCameroniEJaquenoudMLuoXBontronS 2010 Initiation of the TORC1-regulated G0 program requires Igo1/2, which license specific mRNAs to evade degradation via the 5′-3′ mRNA decay pathway. Mol Cell 38 345 355

16. Von StetinaJRTranguchSDeySKLeeLAChaB 2008 alpha-Endosulfine is a conserved protein required for oocyte meiotic maturation in Drosophila. Development 135 3697 3706

17. ArchambaultVZhaoXWhite-CooperHCarpenterATGloverDM 2007 Mutations in Drosophila Greatwall/Scant reveal its roles in mitosis and meiosis and interdependence with Polo kinase. PLoS Genet 3 e200 doi:10.1371/journal.pgen.0030200

18. ArchambaultVD'AvinoPPDeeryMJLilleyKSGloverDM 2008 Sequestration of Polo kinase to microtubules by phosphopriming-independent binding to Map205 is relieved by phosphorylation at a CDK site in mitosis. Genes Dev 22 2707 2720

19. YamamotoTBlake-HodekKWilliamsBLewellynAGoldbergM 2011 Regulation of Greatwall Kinase during Xenopus Oocyte Maturation. Mol Biol Cell 22 2157 2164

20. StafstromJStaehelinL 1984 Dynamics of the nuclear envelope and of nuclear pore complexes during mitosis in the Drosophila embryo. Eur J Cell Biol 34 179 189

21. NeefRGrunebergUKopajtichRLiXNiggE 2007 Choice of Plk1 docking partners during mitosis and cytokinesis is controlled by the activation state of Cdk1. Nat Cell Biol 9 436 444

Štítky
Genetika Reprodukčná medicína

Článok vyšiel v časopise

PLOS Genetics


2011 Číslo 8
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