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Development (Cambridge, England)|May 13, 2008
FoxM1-driven cell division is required for neuronal differentiation in early Xenopus embryosHiroyuki Ueno, Nobushige Nakajo, Minoru Watanabe, et al.Nature|April 6, 2007
A direct link of the Mos-MAPK pathway to Erp1/Emi2 in meiotic arrest of Xenopus laevis eggsDaigo Inoue, Munemichi Ohe, Yoshinori Kanemori, et al.The Journal of Biological Chemistry|May 20, 2003
The RRASK motif in Xenopus cyclin B2 is required for the substrate recognition of Cdc25C by the cyclin B-Cdc2 complexTadahiro Goda, Takashi Ishii, Nobushige Nakajo, et al.The EMBO Journal|July 24, 2004
Chk1, but not Chk2, inhibits Cdc25 phosphatases by a novel common mechanismKatsuhiro Uto, Daigo Inoue, Ken Shimuta, et al.The EMBO Journal|July 12, 2002
Chk1 is activated transiently and targets Cdc25A for degradation at the Xenopus midblastula transitionKen Shimuta, Nobushige Nakajo, Katsuhiro Uto, et al.The International Journal of Developmental Biology|September 28, 2011
Temporal and spatial expression patterns of Cdc25 phosphatase isoforms during early Xenopus developmentNobushige Nakajo, Yu-Ki Deno, Hiroyuki Ueno, et al.Molecular Biology of the Cell|February 27, 2009
The extracellular signal-regulated kinase-mitogen-activated protein kinase pathway phosphorylates and targets Cdc25A for SCF beta-TrCP-dependent degradation for cell cycle arrestMichitaka Isoda, Yoshinori Kanemori, Nobushige Nakajo, et al.Scientific Reports|January 22, 2015
Identification of non-Ser/Thr-Pro consensus motifs for Cdk1 and their roles in mitotic regulation of C2H2 zinc finger proteins and Ect2Kazuhiro Suzuki, Kosuke Sako, Kazuhiro Akiyama, et al.Nature Communications|April 29, 2014
Emi2 mediates meiotic MII arrest by competitively inhibiting the binding of Ube2S to the APC/CKosuke Sako, Kazuhiro Suzuki, Michitaka Isoda, et al.Molecular Biology of the Cell|January 22, 2010
Emi2 inhibition of the anaphase-promoting complex/cyclosome absolutely requires Emi2 binding via the C-terminal RL tailMunemichi Ohe, Yoshiko Kawamura, Hiroyuki Ueno, et al.Pageof 3