Clarke P R, Hoffmann I, Draetta G, Karsenti E
Cell Biology Program, European Molecular Biology Laboratory, Heidelberg, Germany.
Mol Biol Cell. 1993 Apr;4(4):397-411. doi: 10.1091/mbc.4.4.397.
We have examined the roles of type-1 (PP-1) and type-2A (PP-2A) protein-serine/threonine phosphatases in the mechanism of activation of p34cdc2/cyclin B protein kinase in Xenopus egg extracts. p34cdc2/cyclin B is prematurely activated in the extracts by inhibition of PP-2A by okadaic acid but not by specific inhibition of PP-1 by inhibitor-2. Activation of the kinase can be blocked by addition of the purified catalytic subunit of PP-2A at a twofold excess over the activity in the extract. The catalytic subunit of PP-1 can also block kinase activation, but very high levels of activity are required. Activation of p34cdc2/cyclin B protein kinase requires dephosphorylation of p34cdc2 on Tyr15. This reaction is catalysed by cdc25-C phosphatase that is itself activated by phosphorylation. We show that, in interphase extracts, inhibition of PP-2A by okadaic acid completely blocks cdc25-C dephosphorylation, whereas inhibition of PP-1 by specific inhibitors has no effect. This indicates that a type-2A protein phosphatase negatively regulates p34cdc2/cyclin B protein kinase activation primarily by maintaining cdc25-C phosphatase in a dephosphorylated, low activity state. In extracts containing active p34cdc2/cyclin B protein kinase, dephosphorylation of cdc25-C is inhibited, whereas the activity of PP-2A (and PP-1) towards other substrates is unaffected. We propose that this specific inhibition of cdc25-C dephosphorylation is part of a positive feedback loop that also involves direct phosphorylation and activation of cdc25-C by p34cdc2/cyclin B. Dephosphorylation of cdc25-C is also inhibited when cyclin A-dependent protein kinase is active, and this may explain the potentiation of p34cdc2/cyclin B protein kinase activation by cyclin A. In extracts supplemented with nuclei, the block on p34cdc2/cyclin B activation by unreplicated DNA is abolished when PP-2A is inhibited or when stably phosphorylated cdc25-C is added, but not when PP-1 is specifically inhibited. This suggests that unreplicated DNA inhibits p34cdc2/cyclin B activation by maintaining cdc25-C in a low activity, dephosphorylated state, probably by keeping the activity of a type-2A protein phosphatase towards cdc25-C at a high level.
我们研究了1型(PP - 1)和2A型(PP - 2A)蛋白丝氨酸/苏氨酸磷酸酶在非洲爪蟾卵提取物中p34cdc2/细胞周期蛋白B蛋白激酶激活机制中的作用。在提取物中,冈田酸抑制PP - 2A可使p34cdc2/细胞周期蛋白B过早激活,而抑制剂 - 2特异性抑制PP - 1则无此作用。加入纯化的PP - 2A催化亚基,其活性比提取物中的活性高两倍时,可阻断激酶的激活。PP - 1的催化亚基也能阻断激酶激活,但需要非常高的活性水平。p34cdc2/细胞周期蛋白B蛋白激酶的激活需要p34cdc2的Tyr15去磷酸化。此反应由cdc25 - C磷酸酶催化,而cdc25 - C磷酸酶本身通过磷酸化被激活。我们发现,在间期提取物中,冈田酸抑制PP - 2A可完全阻断cdc25 - C的去磷酸化,而特异性抑制剂抑制PP - 1则无影响。这表明2A型蛋白磷酸酶主要通过使cdc25 - C磷酸酶保持去磷酸化的低活性状态来负向调节p34cdc2/细胞周期蛋白B蛋白激酶的激活。在含有活性p34cdc2/细胞周期蛋白B蛋白激酶的提取物中,cdc25 - C的去磷酸化受到抑制,而PP - 2A(和PP - 1)对其他底物的活性不受影响。我们推测,对cdc25 - C去磷酸化的这种特异性抑制是正反馈环的一部分,该正反馈环还涉及p34cdc2/细胞周期蛋白B对cdc25 - C的直接磷酸化和激活。当细胞周期蛋白A依赖性蛋白激酶有活性时,cdc25 - C的去磷酸化也受到抑制,这可能解释了细胞周期蛋白A对p34cdc2/细胞周期蛋白B蛋白激酶激活的增强作用。在补充了细胞核的提取物中,当PP - 2A被抑制或加入稳定磷酸化的cdc25 - C时,未复制的DNA对p34cdc2/细胞周期蛋白B激活的阻断作用被消除,但当PP - 1被特异性抑制时则不然。这表明未复制的DNA通过使cdc25 - C保持低活性、去磷酸化状态来抑制p34cdc2/细胞周期蛋白B的激活,可能是通过使2A型蛋白磷酸酶对cdc25 - C的活性保持在高水平。