Yoon H J, Loo S, Campbell J L
Braun Laboratories, California Institute of Technology, Pasadena 91125.
Mol Biol Cell. 1993 Feb;4(2):195-208. doi: 10.1091/mbc.4.2.195.
The yeast Cdc7 function is required for the G1/S transition and is dependent on passage through START, a point controlled by the Cdc28/cdc2/p34 protein kinase. CDC7 encodes a protein kinase activity, and we now show that this kinase activity varies in the cell cycle but that protein levels appear to remain constant. We present several lines of evidence that periodic activation of CDC7 kinase is at least in part through phosphorylation. First, the kinase activity of the Cdc7 protein is destroyed by dephosphorylation of the protein in vitro with phosphatase. Second, Cdc7 protein is hypophosphorylated and inactive as a kinase in extracts of cells arrested at START but becomes active and maximally phosphorylated subsequent to passage through START. The phosphorylation pattern of Cdc7 protein is complex. Phosphopeptide mapping reveals four phosphopeptides in Cdc7 prepared from asynchronous yeast cells. Both autophosphorylation and phosphorylation in trans appear to contribute to this pattern. Autophosphorylation is shown to occur by using a thermolabile Cdc7 protein. A protein in yeast extracts can phosphorylate and activate Cdc7 protein made in Escherichia coli, and phosphorylation is thermolabile in cdc28 mutant extracts. Cdc7 protein carrying a serine to alanine change in the consensus recognition site for Cdc28 kinase shows an altered phosphopeptide map, suggesting that this site is important in determining the overall Cdc7 phosphorylation pattern.
酵母Cdc7功能对于G1/S期转换是必需的,并且依赖于通过START点,START点受Cdc28/cdc2/p34蛋白激酶控制。CDC7编码一种蛋白激酶活性,我们现在表明这种激酶活性在细胞周期中变化,但蛋白水平似乎保持恒定。我们提供了几条证据表明CDC7激酶的周期性激活至少部分是通过磷酸化作用。首先,Cdc7蛋白的激酶活性在体外被磷酸酶使蛋白去磷酸化而破坏。其次,Cdc7蛋白在停滞于START点的细胞提取物中是低磷酸化的且作为激酶无活性,但在通过START点后变得有活性并达到最大磷酸化。Cdc7蛋白的磷酸化模式很复杂。磷酸肽图谱分析揭示了从异步酵母细胞制备的Cdc7中有四个磷酸肽。自身磷酸化和顺式磷酸化似乎都对这种模式有贡献。通过使用热不稳定的Cdc7蛋白证明了自身磷酸化的发生。酵母提取物中的一种蛋白可以磷酸化并激活在大肠杆菌中产生的Cdc7蛋白,并且在cdc28突变体提取物中磷酸化是热不稳定的。在Cdc28激酶的共有识别位点携带丝氨酸到丙氨酸变化的Cdc7蛋白显示出改变的磷酸肽图谱,表明该位点在确定整体Cdc7磷酸化模式中很重要。