Marini N J, Meldrum E, Buehrer B, Hubberstey A V, Stone D E, Traynor-Kaplan A, Reed S I
Department of Molecular Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.
EMBO J. 1996 Jun 17;15(12):3040-52.
In an effort to study further the mechanism of Cdc28 function and cell cycle commitment, we describe here a genetic approach to identify components of pathways downstream of the Cdc28 kinase at START by screening for mutations that decrease the effectiveness of signaling by Cdc28. The first locus to be characterized in detail using this approach was PKC1 which encodes a homolog of the Ca(2+)-dependent isozymes of the mammalian protein kinase C (PKC) superfamily (Levin et al., 1990). By several genetic criteria, we show a functional interaction between CDC28 and PKC1 with PKC1 apparently functioning with respect to bud emergence downstream of START. Consistent with this, activity of the MAP kinase homolog Mpk1 (a putative Pkc1 effector) is stimulated by activation of Cdc28. Furthermore, we demonstrate a cell cycle-dependent hydrolysis of phosphatidylcholine to diacylglycerol (a PKC activator) and choline phosphate at START. Diacylglycerol production is stimulated by Cdc28 in cycling cells and is closely associated with Cdc28 activation at START. These results imply that the activation of Pkc1, which is known to be necessary during bud morphogenesis, is mediated via the CDC28-dependent stimulation of PC-PLC activity in a novel cell cycle-regulated signaling pathway.
为了进一步研究Cdc28功能和细胞周期起始的机制,我们在此描述一种遗传学方法,通过筛选降低Cdc28信号传导有效性的突变来鉴定START处Cdc28激酶下游途径的成分。使用这种方法详细表征的第一个基因座是PKC1,它编码哺乳动物蛋白激酶C(PKC)超家族的Ca(2+)依赖性同工酶的同源物(Levin等人,1990年)。通过几个遗传学标准,我们显示了CDC28和PKC1之间的功能相互作用,PKC1显然在START下游的芽出现方面发挥作用。与此一致的是,MAP激酶同源物Mpk1(一种假定的Pkc1效应器)的活性受到Cdc28激活的刺激。此外,我们证明在START处磷脂酰胆碱细胞周期依赖性水解为二酰基甘油(一种PKC激活剂)和磷酸胆碱。在循环细胞中,二酰基甘油的产生受到Cdc28的刺激,并且与START处的Cdc28激活密切相关。这些结果表明,已知在芽形态发生过程中必需的Pkc1的激活是通过一种新的细胞周期调节信号通路中依赖于CDC28的PC-PLC活性刺激介导的。