Enoch T, Nurse P
Department of Biochemistry, Oxford University, England.
Cell. 1990 Feb 23;60(4):665-73. doi: 10.1016/0092-8674(90)90669-6.
Entry into mitosis in fission yeast is controlled by the p34cdc2 protein kinase, which is activated by cdc25+ and inhibited by wee1+. In "wee" mutants one or the other of these controls is circumvented resulting in advancement of mitosis. We report that dependence of mitosis on DNA synthesis is lost in wee mutants in which cdc25+ control is circumvented either by mutations in cdc2+ or by overproduction of cdc25+. In contrast, dependence is maintained when the wee1+ control is bypassed. We propose that cdc25+ activity requires completion of earlier cell-cycle events such as DNA synthesis, and thus links p34cdc2 kinase activation to completion of these earlier events. Constitutive expression of cdc25+ homologs could explain why mitosis is not dependent on DNA replication in some early embryos.
裂殖酵母进入有丝分裂受p34cdc2蛋白激酶控制,该激酶被cdc25+激活并被wee1+抑制。在“wee”突变体中,这些控制中的一种或另一种被规避,导致有丝分裂提前。我们报告,在cdc2+发生突变或过量表达cdc25+从而规避cdc25+控制的wee突变体中,有丝分裂对DNA合成的依赖性丧失。相反,当绕过wee1+控制时,依赖性得以维持。我们提出,cdc25+活性需要完成诸如DNA合成等早期细胞周期事件,因此将p34cdc2激酶激活与这些早期事件的完成联系起来。cdc25+同源物的组成型表达可以解释为什么在一些早期胚胎中有丝分裂不依赖于DNA复制。