Wang H, Qi Q, Schorr P, Cutler A J, Crosby W L, Fowke L C
Department of Biology, University of Saskatchewan, Saskatoon, Canada.
Plant J. 1998 Aug;15(4):501-10. doi: 10.1046/j.1365-313x.1998.00231.x.
Cyclin-dependent kinase (CDK) inhibitor genes encode low molecular weight proteins which have important functions in cell cycle regulation, development and perhaps also in tumorigenesis. The first plant CDK inhibitor gene ICK1 was recently identified from Arabidopsis thaliana. Although the C-terminal domain of ICK1 contained an important consensus sequence with the mammalian CDK inhibitor p27Kip1, the remainder of the deduced ICK1 sequence showed little similarity to any known CDK inhibitors. In vitro assays showed that recombinant ICK1 exhibited unique kinase inhibitory properties. In the present study we characterized ICK1 in terms of its gene structure, its interaction with both A. thaliana Cdc2a and CycD3, and its induction by the plant growth regulator, abscisic acid (ABA). ICK1 was expressed at a relatively low level in the tissues surveyed. However, ICK1 was induced by ABA, and along with ICK1 induction there was a decrease in Cdc2-like histone H1 kinase activity. These results suggest a molecular mechanism by which plant cell division might be inhibited by ABA. ICK1 clones were also identified from independent yeast two-hybrid screens using the CycD3 construct. The implication that ICK1 protein could interact with both Cdc2a and CycD3 was confirmed by in vitro binding assays. Furthermore, deletion analysis indicated that different regions of ICK1 are required for the interactions with Cdc2a and CycD3. These results provide a mechanistic basis for understanding the role of CDK inhibitors in cell cycle regulation in plant cells.
细胞周期蛋白依赖性激酶(CDK)抑制基因编码低分子量蛋白质,这些蛋白质在细胞周期调控、发育以及可能在肿瘤发生中具有重要功能。首个植物CDK抑制基因ICK1最近从拟南芥中被鉴定出来。尽管ICK1的C末端结构域包含与哺乳动物CDK抑制剂p27Kip1重要的共有序列,但推导的ICK1序列的其余部分与任何已知的CDK抑制剂几乎没有相似性。体外试验表明,重组ICK1表现出独特的激酶抑制特性。在本研究中,我们从基因结构、与拟南芥Cdc2a和CycD3的相互作用以及植物生长调节剂脱落酸(ABA)对其的诱导方面对ICK1进行了表征。ICK1在所检测的组织中表达水平相对较低。然而,ICK1受ABA诱导,随着ICK1的诱导,Cdc2样组蛋白H1激酶活性降低。这些结果提示了一种分子机制,通过该机制ABA可能抑制植物细胞分裂。使用CycD3构建体通过独立的酵母双杂交筛选也鉴定出了ICK1克隆。体外结合试验证实了ICK1蛋白可与Cdc2a和CycD3相互作用这一推测。此外,缺失分析表明ICK1与Cdc2a和CycD3相互作用需要不同的区域。这些结果为理解CDK抑制剂在植物细胞周期调控中的作用提供了一个机制基础。