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蛋白激酶C同工酶介导的细胞周期停滞涉及肠道上皮细胞中p21(waf1/cip1)和p27(kip1)的诱导以及视网膜母细胞瘤蛋白的低磷酸化。

Protein kinase C isozyme-mediated cell cycle arrest involves induction of p21(waf1/cip1) and p27(kip1) and hypophosphorylation of the retinoblastoma protein in intestinal epithelial cells.

作者信息

Frey M R, Saxon M L, Zhao X, Rollins A, Evans S S, Black J D

机构信息

Departments of Experimental Therapeutics, Roswell Park Cancer Institute, Buffalo, New York 14263, USA.

出版信息

J Biol Chem. 1997 Apr 4;272(14):9424-35. doi: 10.1074/jbc.272.14.9424.

Abstract

The molecular mechanisms underlying protein kinase C (PKC) isozyme-mediated control of cell growth and cell cycle progression are poorly understood. Our previous analysis of PKC isozyme regulation in the intestinal epithelium in situ revealed that multiple members of the PKC family undergo changes in expression and subcellular distribution precisely as the cells cease proliferating in the mid-crypt region, suggesting that activation of one or more of these molecules is involved in negative regulation of cell growth in this system (Saxon, M. L., Zhao, X., and Black, J. D. (1994) J. Cell Biol. 126, 747-763). In the present study, the role of PKC isozyme(s) in control of intestinal epithelial cell growth and cell cycle progression was examined directly using the IEC-18 immature crypt cell line as a model system. Treatment of IEC-18 cells with PKC agonists resulted in translocation of PKC alpha, delta, and epsilon from the soluble to the particulate subcellular fraction, cell cycle arrest in G1 phase, and delayed transit through S and/or G2/M phases. PKC-mediated cell cycle arrest in G1 was accompanied by accumulation of the hypophosphorylated, growth-suppressive form of the retinoblastoma protein and induction of the cyclin-dependent kinase inhibitors p21(waf1/cip1) and p27(kip1). Reversal of these cell cycle regulatory effects was coincident with activator-induced down-regulation of PKC alpha, delta, and epsilon. Differential down-regulation of individual PKC isozymes revealed that PKC alpha in particular is sufficient to mediate cell cycle arrest by PKC agonists in this system. Taken together, the data implicate PKC alpha in negative regulation of intestinal epithelial cell growth both in vitro and in situ via pathways which involve modulation of Cip/Kip family cyclin-dependent kinase inhibitors and the retinoblastoma growth suppressor protein.

摘要

蛋白激酶C(PKC)同工酶介导的细胞生长和细胞周期进程调控的分子机制目前仍知之甚少。我们之前对小肠上皮原位PKC同工酶调控的分析表明,PKC家族的多个成员在细胞于隐窝中部区域停止增殖时,其表达和亚细胞分布会发生精确变化,这表明这些分子中一种或多种的激活参与了该系统中细胞生长的负调控(Saxon, M. L., Zhao, X., and Black, J. D. (1994) J. Cell Biol. 126, 747 - 763)。在本研究中,我们以IEC - 18未成熟隐窝细胞系为模型系统,直接检测了PKC同工酶在小肠上皮细胞生长和细胞周期进程调控中的作用。用PKC激动剂处理IEC - 18细胞会导致PKCα、δ和ε从可溶性亚细胞组分易位至颗粒性亚细胞组分,细胞周期停滞于G1期,并延迟通过S期和/或G2/M期。PKC介导的G1期细胞周期停滞伴随着视网膜母细胞瘤蛋白低磷酸化、生长抑制形式的积累以及细胞周期蛋白依赖性激酶抑制剂p21(waf1/cip1)和p27(kip1)的诱导。这些细胞周期调控效应的逆转与激活剂诱导的PKCα、δ和ε下调同时发生。对单个PKC同工酶的差异性下调表明,在该系统中,PKCα尤其足以介导PKC激动剂引起的细胞周期停滞。综上所述,这些数据表明PKCα在体外和原位通过涉及调节Cip/Kip家族细胞周期蛋白依赖性激酶抑制剂和视网膜母细胞瘤生长抑制蛋白的途径,参与小肠上皮细胞生长的负调控。

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