Flachon Virginie, Tonoli Hélène, Selmi-Ruby Samia, Durand Christine, Rabilloud Rachida, Rousset Bernard, Munari-Silem Yvonne
Institut National de la Santé et de la Recherche Médicale, Faculté de Médecine Lyon-RTH Laennec, France.
Eur J Cell Biol. 2002 May;81(5):243-52. doi: 10.1078/0171-9335-00245.
Gap junctions are known to play a role in the control of cell proliferation, and connexins (Cx) are considered to be tumor suppressors. However, the effects of Cx on cell proliferation are dependent on the Cx which is expressed and on the cell type under consideration. We previously found that restoration of cell-to-cell communication by stable transfection of two independent thyroid-derived cell lines, FRTL-5 and FRT cells, with the Cx32 gene induced a marked reduction of their proliferation rate. This study aimed i) at determining whether Cx43, which is coexpressed with Cx32 by thyroid epithelial cells, exerts the same action as Cx32 on cell proliferation and ii) at identifying alterations of the cell cycle control system that might account for the Cx32-induced proliferation slowdown in thyrocytes. In contrast with previous data on different epithelial cell types, we report that restoration of intercellular communication in FRTL-5 and FRT cells by stable expression of Cx43 did not modify their proliferation properties. Cell cycle analyses revealed that the Cx32-induced proliferation slow-down was related to a lengthening of the G1 phase. The level of expression of two regulatory proteins of the Cip/Kip cyclin-dependent kinase inhibitor family, p27kip1 and p2cip1, was increased in the two cell lines expressing Cx32. In conclusion, Cx32 and Cx43, physiologically coexpressed by thyrocytes, have a differential impact on thyroid cell proliferation in vitro. The cyclin-dependent kinase inhibitors, p27kip1 and p21cip1 might represent cell cycle effectors relaying the down-regulatory effect of Cx32 on the proliferation of thyroid epithelial cells.
已知间隙连接在细胞增殖控制中发挥作用,而连接蛋白(Cx)被认为是肿瘤抑制因子。然而,Cx对细胞增殖的影响取决于所表达的Cx以及所研究的细胞类型。我们之前发现,通过将两个独立的甲状腺来源细胞系FRTL-5和FRT细胞稳定转染Cx32基因来恢复细胞间通讯,可显著降低其增殖速率。本研究旨在:i)确定与Cx32共同表达于甲状腺上皮细胞的Cx43对细胞增殖是否具有与Cx32相同的作用;ii)识别可能解释Cx32诱导甲状腺细胞增殖减缓的细胞周期控制系统改变。与之前关于不同上皮细胞类型的数据相反,我们报告通过稳定表达Cx43恢复FRTL-5和FRT细胞间通讯并未改变其增殖特性。细胞周期分析显示,Cx32诱导的增殖减缓与G1期延长有关。在两个表达Cx32的细胞系中,Cip/Kip细胞周期蛋白依赖性激酶抑制剂家族的两种调节蛋白p27kip1和p2cip1的表达水平升高。总之,甲状腺细胞生理上共同表达的Cx32和Cx43对体外甲状腺细胞增殖具有不同影响。细胞周期蛋白依赖性激酶抑制剂p27kip1和p21cip1可能代表介导Cx32对甲状腺上皮细胞增殖下调作用的细胞周期效应器。