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将蛋白激酶C与细胞周期调控联系起来。

Linking protein kinase C to cell-cycle control.

作者信息

Livneh E, Fishman D D

机构信息

Department of Immunology and Microbiology, Faculty of Health Sciences, Ben Gurion University, Beer Sheva, Israel.

出版信息

Eur J Biochem. 1997 Aug 15;248(1):1-9. doi: 10.1111/j.1432-1033.1997.t01-4-00001.x.

Abstract

Protein kinase C (PKC) isoenzymes are involved in diverse cellular functions, including differentiation, growth control, tumor promotion, and cell death. In recent years, evidence has began to emerge suggesting a role for PKC in cell cycle control. A paper published recently, demonstrating a functional link between PKC and cell cycle control in yeast (Marini, N. J., Meldrum, E., Buehrer, B., Hubberstey, A. V., Stone, D. E., Traynor-Kaplan, A. & Reed, S. I. (1996) EMBO J. 15, 3040-3052), strengthens this data. Thus, the existence of cell-cycle-regulated pathways involving PKC in both yeast and mammals indicate that PKC may be a conserved regulator of cell cycle events that links signal transduction pathways and the cell-cycle machinery. In this paper, we will review current data on the cell cycle components that are targets for PKC regulation. PKC enzymes appear to operate as regulators of the cell cycle at two sites, during G1 progression and G2/M transition. In G1, the overall effect of PKC activation is inhibition of the cell cycle at mid to late G1. This cell cycle inhibition correlates with a blockage in the normal phosphorylation of the tumor suppressor retinoblastoma Rb protein, presumably through an indirect mechanism. The reduced activity of the cyclin-dependent kinase, Cdk2, appears to be the major effect of PKC activation in various cell systems. This may also underlie the inhibition of Rb phosphorylation exhibited by PKC activation. Several mechanisms were described in different studies on the regulation of Cdk2 activity by PKC; reduced Cdk-activating kinase activity, diminished expression of the Cdk2 partners cyclins E or A, and the increased expression of the cyclin-dependent inhibitors, p21WAF1 and p27KIP1, which are capable of binding to cyclin/Cdk2 complexes. PKC enzymes were also shown to play a role in G2/M transition. Among the suggested mechanisms is suppression of Cdc2 activity. However, most of the published data strongly implicate PKC in lamin B phosphorylation and nuclear envelope disassembly.

摘要

蛋白激酶C(PKC)同工酶参与多种细胞功能,包括分化、生长控制、肿瘤促进和细胞死亡。近年来,有证据开始表明PKC在细胞周期调控中发挥作用。最近发表的一篇论文证明了酵母中PKC与细胞周期调控之间的功能联系(Marini, N. J., Meldrum, E., Buehrer, B., Hubberstey, A. V., Stone, D. E., Traynor-Kaplan, A. & Reed, S. I. (1996) EMBO J. 15, 3040 - 3052),这进一步证实了该数据。因此,酵母和哺乳动物中均存在涉及PKC的细胞周期调控途径,这表明PKC可能是连接信号转导途径和细胞周期机制的细胞周期事件的保守调节因子。在本文中,我们将综述目前关于作为PKC调控靶点的细胞周期组分的数据。PKC酶似乎在两个位点作为细胞周期的调节因子发挥作用,即在G1期进程和G2/M期转换期间。在G1期,PKC激活的总体效应是在G1期中期至后期抑制细胞周期。这种细胞周期抑制与肿瘤抑制因子视网膜母细胞瘤Rb蛋白正常磷酸化的阻断相关,推测是通过间接机制。细胞周期蛋白依赖性激酶Cdk2活性的降低似乎是PKC激活在各种细胞系统中的主要效应。这也可能是PKC激活所表现出的对Rb磷酸化抑制的基础。在关于PKC对Cdk2活性调控的不同研究中描述了几种机制;Cdk激活激酶活性降低、Cdk2伴侣细胞周期蛋白E或A的表达减少以及细胞周期蛋白依赖性抑制剂p21WAF1和p27KIP1表达增加,这些抑制剂能够与细胞周期蛋白/Cdk2复合物结合。PKC酶也被证明在G2/M期转换中发挥作用。所提出的机制包括抑制Cdc2活性。然而,大多数已发表的数据强烈表明PKC参与核纤层蛋白B磷酸化和核膜解体。

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