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分子开关和分子扣:控制有丝分裂的激酶和磷酸酶之间的生化拔河比赛。

Switches and latches: a biochemical tug-of-war between the kinases and phosphatases that control mitosis.

机构信息

Department of Biochemistry, Oxford Centre for Integrative Systems Biology, University of Oxford, South Parks Road, Oxford OX1 3QU, UK.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2011 Dec 27;366(1584):3584-94. doi: 10.1098/rstb.2011.0087.

DOI:10.1098/rstb.2011.0087
PMID:22084385
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3203464/
Abstract

Activation of the cyclin-dependent kinase (Cdk1) cyclin B (CycB) complex (Cdk1:CycB) in mitosis brings about a remarkable extent of protein phosphorylation. Cdk1:CycB activation is switch-like, controlled by two auto-amplification loops--Cdk1:CycB activates its activating phosphatase, Cdc25, and inhibits its inhibiting kinase, Wee1. Recent experimental evidence suggests that parallel to Cdk1:CycB activation during mitosis, there is inhibition of its counteracting phosphatase activity. We argue that the downregulation of the phosphatase is not just a simple latch that suppresses futile cycles of phosphorylation/dephosphorylation during mitosis. Instead, we propose that phosphatase regulation creates coherent feed-forward loops and adds extra amplification loops to the Cdk1:CycB regulatory network, thus forming an integral part of the mitotic switch. These network motifs further strengthen the bistable characteristic of the mitotic switch, which is based on the antagonistic interaction of two groups of proteins: M-phase promoting factors (Cdk1:CycB, Cdc25, Greatwall and Endosulfine/Arpp19) and interphase promoting factors (Wee1, PP2A-B55 and a Greatwall counteracting phosphatase, probably PP1). The bistable character of the switch implies the existence of a CycB threshold for entry into mitosis. The end of G2 phase is determined by the point where CycB level crosses the CycB threshold for Cdk1 activation.

摘要

有丝分裂中细胞周期蛋白依赖性激酶 (Cdk1) 与细胞周期蛋白 B (CycB) 复合物 (Cdk1:CycB) 的激活会引起显著程度的蛋白质磷酸化。Cdk1:CycB 的激活是开关式的,由两个自动放大环控制——Cdk1:CycB 激活其激活磷酸酶 Cdc25,并抑制其抑制激酶 Wee1。最近的实验证据表明,在有丝分裂过程中,除了 Cdk1:CycB 的激活之外,还存在对其拮抗磷酸酶活性的抑制。我们认为,磷酸酶的下调不仅仅是一个简单的闩锁,它可以抑制有丝分裂过程中磷酸化/去磷酸化的无效循环。相反,我们提出磷酸酶的调节创建了连贯的前馈环,并为 Cdk1:CycB 调控网络增加了额外的放大环,从而成为有丝分裂开关的一个组成部分。这些网络基元进一步增强了有丝分裂开关的双稳态特性,该特性基于两组蛋白质的拮抗相互作用:M 期促进因子(Cdk1:CycB、Cdc25、Wall 和 Endosulfine/Arpp19)和间期促进因子(Wee1、PP2A-B55 和一个 Wall 拮抗磷酸酶,可能是 PP1)。开关的双稳态特性意味着存在进入有丝分裂的 CycB 阈值。G2 期的结束取决于 CycB 水平跨越 Cdk1 激活的 CycB 阈值的点。

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本文引用的文献

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Protein phosphatase 2A controls the order and dynamics of cell-cycle transitions.蛋白磷酸酶 2A 控制细胞周期转变的顺序和动力学。
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