Department of Biological and Biomedical Sciences, School of Life Sciences, Glasgow Caledonian University, 70 Cowcaddens Rd, Glasgow, Scotland G4 0BA, UK.
J Cell Biochem. 2010 Jun 1;110(3):772-82. doi: 10.1002/jcb.22590.
Connexins (Cxs) and gap junction (GJ)-mediated communication have been linked with the regulation of cell cycle traverse. However, it is not clear whether Cx expression or GJ channel function are the key mediators in this process or at what stage this regulation may occur. We therefore tested the hypothesis that enhanced Cx expression could alter the rate of cell cycle traverse independently of GJ channel function. Sodium butyrate (NaBu) or anti-arrhythmic peptide (AAP10) were used to enhance Cx expression in HeLa cells stably expressing Cx43 (HeLa-43) and primary cultures of human fibroblasts (HFF) that predominantly express Cx43. To reduce GJ-mediated communication, 18-alpha-glycyrrhetinic acid (GA) was used. In HeLa-43 and HFF cells, NaBu and AAP10 enhanced Cx43 expression and increased channel function, while GA reduced GJ-mediated communication but did not significantly alter Cx43 expression levels. Timelapse microscopy and flow cytometry of HeLa-WT (wild-type, Cx deficient) and HeLa-43 cells dissected cell cycle traverse and enabled measurements of intra-mitotic time and determined levels of G1 arrest. Enhanced Cx43 expression increased mitotic durations corresponding with a G1 delay in cell cycle, which was linked to an increase in expression of the cell cycle inhibitor p21(waf1/cip1) in both HeLa-43 and HFF cells. Reductions in Cx43 channel function did not abrogate these responses, indicating that GJ channel function was not a critical factor in reducing cell proliferation in either cell type. We conclude that enhanced Cx43 expression and not GJ-mediated communication, is involved in regulating cell cycle traverse.
间隙连接(GJ)及其介导的通讯与细胞周期的调节有关。然而,尚不清楚 Cx 表达或 GJ 通道功能是否是该过程的关键调节因素,或者这种调节可能发生在哪个阶段。因此,我们检验了这样一个假设,即增强的 Cx 表达可以改变细胞周期穿越的速度,而不依赖于 GJ 通道功能。我们使用丁酸钠(NaBu)或抗心律失常肽(AAP10)来增强稳定表达 Cx43 的 HeLa 细胞(HeLa-43)和主要表达 Cx43 的人成纤维细胞(HFF)的 Cx 表达。为了减少 GJ 介导的通讯,使用了 18-α-甘草次酸(GA)。在 HeLa-43 和 HFF 细胞中,NaBu 和 AAP10 增强了 Cx43 的表达并增加了通道功能,而 GA 减少了 GJ 介导的通讯,但并没有显著改变 Cx43 的表达水平。HeLa-WT(野生型,Cx 缺陷)和 HeLa-43 细胞的延时显微镜和流式细胞术分析了细胞周期穿越,并能够测量有丝分裂时间和确定 G1 期阻滞水平。增强的 Cx43 表达增加了有丝分裂持续时间,对应于细胞周期中的 G1 期延迟,这与细胞周期抑制剂 p21(waf1/cip1)的表达增加有关,在 HeLa-43 和 HFF 细胞中均如此。Cx43 通道功能的降低并没有消除这些反应,表明在这两种细胞类型中,GJ 通道功能都不是降低细胞增殖的关键因素。我们的结论是,增强的 Cx43 表达而不是 GJ 介导的通讯,参与了细胞周期穿越的调节。