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本文引用的文献

1
Changes in regulatory phosphorylation of Cdc25C Ser287 and Wee1 Ser549 during normal cell cycle progression and checkpoint arrests.在正常细胞周期进程和检查点阻滞期间,Cdc25C丝氨酸287和Wee1丝氨酸549的调节性磷酸化变化。
Mol Biol Cell. 2005 Dec;16(12):5749-60. doi: 10.1091/mbc.e05-06-0541. Epub 2005 Sep 29.
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Systems-level dissection of the cell-cycle oscillator: bypassing positive feedback produces damped oscillations.细胞周期振荡器的系统级剖析:绕过正反馈会产生阻尼振荡。
Cell. 2005 Aug 26;122(4):565-78. doi: 10.1016/j.cell.2005.06.016.
3
Involvement of protein kinase PKN1 in G2/M delay caused by arsenite.蛋白激酶PKN1参与亚砷酸盐引起的G2/M期阻滞。
Mol Carcinog. 2005 May;43(1):1-12. doi: 10.1002/mc.20087.
4
MAPKAP kinase-2 is a cell cycle checkpoint kinase that regulates the G2/M transition and S phase progression in response to UV irradiation.丝裂原活化蛋白激酶激活的蛋白激酶2是一种细胞周期检查点激酶,可响应紫外线照射调节G2/M期转换和S期进程。
Mol Cell. 2005 Jan 7;17(1):37-48. doi: 10.1016/j.molcel.2004.11.021.
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Regulation of zipper-interacting protein kinase activity in vitro and in vivo by multisite phosphorylation.多位点磷酸化对拉链相互作用蛋白激酶活性的体内外调控
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When the checkpoints have gone: insights into Cdc25 functional activation.当关卡消失时:对Cdc25功能激活的见解。
Cell Cycle. 2004 Apr;3(4):425-8. Epub 2004 Apr 1.
7
A positive-feedback-based bistable 'memory module' that governs a cell fate decision.一种基于正反馈的双稳态“记忆模块”,其控制细胞命运决定。
Nature. 2003 Nov 27;426(6965):460-5. doi: 10.1038/nature02089.
8
PP1 control of M phase entry exerted through 14-3-3-regulated Cdc25 dephosphorylation.通过14-3-3调节的Cdc25去磷酸化实现PP1对M期进入的控制。
EMBO J. 2003 Nov 3;22(21):5734-45. doi: 10.1093/emboj/cdg545.
9
Phosphorylation of Xenopus Cdc25C at Ser285 interferes with ability to activate a DNA damage replication checkpoint in pre-midblastula embryos.非洲爪蟾Cdc25C在丝氨酸285处的磷酸化会干扰激活囊胚中期前胚胎中DNA损伤复制检查点的能力。
Cell Cycle. 2003 May-Jun;2(3):263-6.
10
Dual phosphorylation controls Cdc25 phosphatases and mitotic entry.双重磷酸化调控Cdc25磷酸酶及有丝分裂进入。
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PP1在Cdc2/细胞周期蛋白B介导的Cdc25正反馈激活中的作用。

A role for PP1 in the Cdc2/Cyclin B-mediated positive feedback activation of Cdc25.

作者信息

Margolis Seth S, Perry Jennifer A, Weitzel Douglas H, Freel Christopher D, Yoshida Minoru, Haystead Timothy A, Kornbluth Sally

机构信息

Department of Pharmacology and Cancer Biology, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

Mol Biol Cell. 2006 Apr;17(4):1779-89. doi: 10.1091/mbc.e05-08-0751. Epub 2006 Feb 8.

DOI:10.1091/mbc.e05-08-0751
PMID:16467385
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1415323/
Abstract

The Cdc25 phosphatase promotes entry into mitosis through the removal of inhibitory phosphorylations on the Cdc2 subunit of the Cdc2/CyclinB complex. During interphase, or after DNA damage, Cdc25 is suppressed by phosphorylation at Ser287 (Xenopus numbering; Ser216 of human Cdc25C) and subsequent binding of the small acidic protein, 14-3-3. As reported recently, at the time of mitotic entry, 14-3-3 protein is removed from Cdc25 and S287 is dephosphorylated by protein phosphatase 1 (PP1). After the initial activation of Cdc25 and consequent derepression of Cdc2/CyclinB, Cdc25 is further activated through a Cdc2-catalyzed positive feedback loop. Although the existence of such a loop has been appreciated for some time, the molecular mechanism for this activation has not been described. We report here that phosphorylation of S285 by Cdc2 greatly enhances recruitment of PP1 to Cdc25, thereby accelerating S287 dephosphorylation and mitotic entry. Moreover, we show that two other previously reported sites of Cdc2-catalyzed phosphorylation on Cdc25 are required for maximal biological activity of Cdc25, but they do not contribute to PP1 regulation and do not act solely through controlling S287 phosphorylation. Therefore, multiple mechanisms, including enhanced recruitment of PP1, are used to promote full activation of Cdc25 at the time of mitotic entry.

摘要

Cdc25磷酸酶通过去除Cdc2/CyclinB复合物中Cdc2亚基上的抑制性磷酸化来促进进入有丝分裂。在间期或DNA损伤后,Cdc25在Ser287(非洲爪蟾编号;人类Cdc25C的Ser216)处被磷酸化并随后与小酸性蛋白14-3-3结合,从而受到抑制。最近报道,在进入有丝分裂时,14-3-3蛋白从Cdc25上被移除,并且S287被蛋白磷酸酶1(PP1)去磷酸化。在Cdc25最初被激活以及随之而来的Cdc2/CyclinB抑制解除后,Cdc25通过Cdc2催化的正反馈环进一步被激活。尽管这种环的存在已经被认识了一段时间,但这种激活的分子机制尚未被描述。我们在此报道,Cdc2对S285的磷酸化极大地增强了PP1向Cdc25的募集,从而加速S287的去磷酸化和进入有丝分裂。此外,我们表明,Cdc25上另外两个先前报道的Cdc2催化的磷酸化位点对于Cdc25的最大生物学活性是必需的,但它们对PP1的调节没有贡献,并且不仅仅通过控制S287的磷酸化起作用。因此,包括增强PP1募集在内的多种机制被用于在进入有丝分裂时促进Cdc25的完全激活。