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Summary Expression Phenotypes Gene Literature (852) GO Terms (13) Nucleotides (414) Proteins (71) Interactants (1362) Wiki
XB--482749

Papers associated with cdk1



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Temporal regulation of embryonic M-phases., Kubiak JZ, Bazile F, Pascal A, Richard-Parpaillon L, Polanski Z, Ciemerych MA, Chesnel F., Folia Histochem Cytobiol. January 1, 2008; 46 (1): 5-9.


Phosphorylation by Cdk1 increases the binding of Eg5 to microtubules in vitro and in Xenopus egg extract spindles., Cahu J, Olichon A, Hentrich C, Schek H, Drinjakovic J, Zhang C, Doherty-Kirby A, Lajoie G, Surrey T., PLoS One. January 1, 2008; 3 (12): e3936.        


Thyrotropin-releasing hormone (TRH) in the cerebellum., Shibusawa N, Hashimoto K, Yamada M., Cerebellum. January 1, 2008; 7 (1): 84-95.


Cdk1 phosphorylation of BubR1 controls spindle checkpoint arrest and Plk1-mediated formation of the 3F3/2 epitope., Wong OK, Fang G., J Cell Biol. November 19, 2007; 179 (4): 611-7.        


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


Wee1 kinase alters cyclin E/Cdk2 and promotes apoptosis during the early embryonic development of Xenopus laevis., Wroble BN, Finkielstein CV, Sible JC., BMC Dev Biol. October 25, 2007; 7 119.          


Control of Emi2 activity and stability through Mos-mediated recruitment of PP2A., Wu JQ, Hansen DV, Guo Y, Wang MZ, Tang W, Freel CD, Tung JJ, Jackson PK, Kornbluth S., Proc Natl Acad Sci U S A. October 16, 2007; 104 (42): 16564-9.


Cyclin E2 is required for embryogenesis in Xenopus laevis., Gotoh T, Shigemoto N, Kishimoto T., Dev Biol. October 15, 2007; 310 (2): 341-7.        


RINGO/cdk1 and CPEB mediate poly(A) tail stabilization and translational regulation by ePAB., Kim JH, Richter JD., Genes Dev. October 15, 2007; 21 (20): 2571-9.


Zinc regulates the ability of Cdc25C to activate MPF/cdk1., Sun L, Chai Y, Hannigan R, Bhogaraju VK, Machaca K., J Cell Physiol. October 1, 2007; 213 (1): 98-104.


Transient activation of calcineurin is essential to initiate embryonic development in Xenopus laevis., Nishiyama T, Yoshizaki N, Kishimoto T, Ohsumi K., Nature. September 20, 2007; 449 (7160): 341-5.


BubR1 and APC/EB1 cooperate to maintain metaphase chromosome alignment., Zhang J, Ahmad S, Mao Y., J Cell Biol. August 27, 2007; 178 (5): 773-84.              


An in vitro nuclear disassembly system reveals a role for the RanGTPase system and microtubule-dependent steps in nuclear envelope breakdown., Mühlhäusser P, Kutay U., J Cell Biol. August 13, 2007; 178 (4): 595-610.                  


A combination of neutral loss and targeted product ion scanning with two enzymatic digestions facilitates the comprehensive mapping of phosphorylation sites., Casado-Vela J, Ruiz EJ, Nebreda AR, Casal JI., Proteomics. August 1, 2007; 7 (15): 2522-9.


The crystal structure of human cyclin B., Petri ET, Errico A, Escobedo L, Hunt T, Basavappa R., Cell Cycle. June 1, 2007; 6 (11): 1342-9.


p42MAPK-mediated phosphorylation of xEIAP/XLX in Xenopus cytostatic factor-arrested egg extracts., Tsuchiya Y, Yamashita S., BMC Biochem. April 11, 2007; 8 5.        


Substrate competition as a source of ultrasensitivity in the inactivation of Wee1., Kim SY, Ferrell JE., Cell. March 23, 2007; 128 (6): 1133-45.


Emi2 at the crossroads: where CSF meets MPF., Hansen DV, Pomerening JR, Summers MK, Miller JJ, Ferrell JE, Jackson PK., Cell Cycle. March 15, 2007; 6 (6): 732-8.


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


Erp1/Emi2 is essential for the meiosis I to meiosis II transition in Xenopus oocytes., Ohe M, Inoue D, Kanemori Y, Sagata N., Dev Biol. March 1, 2007; 303 (1): 157-64.        


Porcine SPDYA2 (RINGO A2) stimulates CDC2 activity and accelerates meiotic maturation of porcine oocytes., Kume S, Endo T, Nishimura Y, Kano K, Naito K., Biol Reprod. March 1, 2007; 76 (3): 440-7.


Role for non-proteolytic control of M-phase-promoting factor activity at M-phase exit., D'Angiolella V, Palazzo L, Santarpia C, Costanzo V, Grieco D., PLoS One. February 28, 2007; 2 (2): e247.          


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


A role for Cdc2- and PP2A-mediated regulation of Emi2 in the maintenance of CSF arrest., Wu Q, Guo Y, Yamada A, Perry JA, Wang MZ, Araki M, Freel CD, Tung JJ, Tang W, Margolis SS, Jackson PK, Yamano H, Asano M, Kornbluth S., Curr Biol. February 6, 2007; 17 (3): 213-24.


Discrete states of a protein interaction network govern interphase and mitotic microtubule dynamics., Niethammer P, Kronja I, Kandels-Lewis S, Rybina S, Bastiaens P, Karsenti E., PLoS Biol. February 1, 2007; 5 (2): e29.            


Anti-breast cancer activity of LFM-A13, a potent inhibitor of Polo-like kinase (PLK)., Uckun FM, Dibirdik I, Qazi S, Vassilev A, Ma H, Mao C, Benyumov A, Emami KH., Bioorg Med Chem. January 15, 2007; 15 (2): 800-14.


Cyclin A degradation employs preferentially used lysines and a cyclin box function other than Cdk1 binding., Ramachandran V, Matzkies M, Dienemann A, Sprenger F., Cell Cycle. January 15, 2007; 6 (2): 171-81.


Analysis of the role of Aurora B on the chromosomal targeting of condensin I., Takemoto A, Murayama A, Katano M, Urano T, Furukawa K, Yokoyama S, Yanagisawa J, Hanaoka F, Kimura K., Nucleic Acids Res. January 1, 2007; 35 (7): 2403-12.          


Cyclin B2/cyclin-dependent kinase1 dissociation precedes CDK1 Thr-161 dephosphorylation upon M-phase promoting factor inactivation in Xenopus laevis cell-free extract., Chesnel F, Bazile F, Pascal A, Kubiak JZ., Int J Dev Biol. January 1, 2007; 51 (4): 297-305.


Paxillin regulates steroid-triggered meiotic resumption in oocytes by enhancing an all-or-none positive feedback kinase loop., Rasar M, DeFranco DB, Hammes SR., J Biol Chem. December 22, 2006; 281 (51): 39455-64.              


CDK1 and calcineurin regulate Maskin association with eIF4E and translational control of cell cycle progression., Cao Q, Kim JH, Richter JD., Nat Struct Mol Biol. December 1, 2006; 13 (12): 1128-34.


A Cdc2-sensitive interaction of the UbL domain of XDRP1S with cyclin B mediates the degradation of cyclin B in Xenopus egg extracts., Tanaka K, Funakoshi M, Kobayashi H., Biochem Biophys Res Commun. November 24, 2006; 350 (3): 774-82.


Negative regulation of condensin I by CK2-mediated phosphorylation., Takemoto A, Kimura K, Yanagisawa J, Yokoyama S, Hanaoka F., EMBO J. November 15, 2006; 25 (22): 5339-48.


Okadaic acid overcomes the blocked cell cycle caused by depleting Cdc2-related kinases in Trypanosoma brucei., Li Z, Tu X, Wang CC., Exp Cell Res. November 1, 2006; 312 (18): 3504-16.


Jun NH2-terminal kinase (JNK) prevents nuclear beta-catenin accumulation and regulates axis formation in Xenopus embryos., Liao G, Tao Q, Tao Q, Kofron M, Chen JS, Schloemer A, Davis RJ, Hsieh JC, Wylie C, Heasman J, Kuan CY., Proc Natl Acad Sci U S A. October 31, 2006; 103 (44): 16313-8.                    


Aurora-A kinase and inhibitor-2 regulate the cyclin threshold for mitotic entry in Xenopus early embryonic cell cycles., Satinover DL, Brautigan DL, Stukenberg PT., Cell Cycle. October 1, 2006; 5 (19): 2268-74.


Cyclin A1/Cdk2 is sufficient but not required for the induction of apoptosis in early Xenopus laevis embryos., Carter AD, Wroble BN, Sible JC., Cell Cycle. October 1, 2006; 5 (19): 2230-6.


Meiotic regulation of the CDK activator RINGO/Speedy by ubiquitin-proteasome-mediated processing and degradation., Gutierrez GJ, Vögtlin A, Castro A, Ferby I, Salvagiotto G, Ronai Z, Lorca T, Nebreda AR., Nat Cell Biol. October 1, 2006; 8 (10): 1084-94.


Inactivation of MAPK in mature oocytes triggers progression into mitosis via a Ca2+ -dependent pathway but without completion of S phase., Zhang WL, Huitorel P, Geneviere AM, Chiri S, Ciapa B., J Cell Sci. September 1, 2006; 119 (Pt 17): 3491-501.


Essential CDK1-inhibitory role for separase during meiosis I in vertebrate oocytes., Gorr IH, Reis A, Boos D, Wühr M, Madgwick S, Jones KT, Stemmann O., Nat Cell Biol. September 1, 2006; 8 (9): 1035-7.


Deciphering the H-Ras pathway in Xenopus oocyte., Gaffré M, Dupré A, Valuckaite R, Suziedelis K, Jessus C, Haccard O., Oncogene. August 24, 2006; 25 (37): 5155-62.


Cyclin B dissociation from CDK1 precedes its degradation upon MPF inactivation in mitotic extracts of Xenopus laevis embryos., Chesnel F, Bazile F, Pascal A, Kubiak JZ., Cell Cycle. August 1, 2006; 5 (15): 1687-98.


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, Phung AC, Ymlahi-Ouazzani Q, Sinzelle L, Ballagny C, Bronchain O, Du Pasquier L, Mazabraud A., Differentiation. June 1, 2006; 74 (5): 244-53.              


Phosphorylation of the p34(cdc2) target site on goldfish germinal vesicle lamin B3 before oocyte maturation., Yamaguchi A, Katsu Y, Matsuyama M, Yoshikuni M, Nagahama Y., Eur J Cell Biol. June 1, 2006; 85 (6): 501-17.


B-Raf and C-Raf are required for Ras-stimulated p42 MAP kinase activation in Xenopus egg extracts., Yue J, Xiong W, Ferrell JE., Oncogene. June 1, 2006; 25 (23): 3307-15.


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


Climbing the Greatwall to mitosis., Jackson PK., Mol Cell. April 21, 2006; 22 (2): 156-7.


The reversibility of mitotic exit in vertebrate cells., Potapova TA, Daum JR, Pittman BD, Hudson JR, Jones TN, Satinover DL, Stukenberg PT, Gorbsky GJ., Nature. April 13, 2006; 440 (7086): 954-8.


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

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