Lukas J, Müller H, Bartkova J, Spitkovsky D, Kjerulff A A, Jansen-Dürr P, Strauss M, Bartek J
Danish Cancer Society, Division for Cancer Biology, Copenhagen.
J Cell Biol. 1994 May;125(3):625-38. doi: 10.1083/jcb.125.3.625.
The retinoblastoma gene product (pRB) participates in the regulation of the cell division cycle through complex formation with numerous cellular regulatory proteins including the potentially oncogenic cyclin D1. Extending the current view of the emerging functional interplay between pRB and D-type cyclins, we now report that cyclin D1 expression is positively regulated by pRB. Cyclin D1 mRNA and protein is specifically downregulated in cells expressing SV40 large T antigen, adenovirus E1A, and papillomavirus E7/E6 oncogene products and this effect requires intact RB-binding, CR2 domain of E1A. Exceptionally low expression of cyclin D1 is also seen in genetically RB-deficient cell lines, in which ectopically expressed wild-type pRB results in specific induction of this G1 cyclin. At the functional level, antibody-mediated cyclin D1 knockout experiments demonstrate that the cyclin D1 protein, normally required for G1 progression, is dispensable for passage through the cell cycle in cell lines whose pRB is inactivated through complex formation with T antigen, E1A, or E7 oncoproteins as well as in cells which have suffered loss-of-function mutations of the RB gene. The requirement for cyclin D1 function is not regained upon experimental elevation of cyclin D1 expression in cells with mutant RB, while reintroduction of wild-type RB into RB-deficient cells leads to restoration of the cyclin D1 checkpoint. These results strongly suggest that pRB serves as a major target of cyclin D1 whose cell cycle regulatory function becomes dispensable in cells lacking functional RB. Based on available data including this study, we propose a model for an autoregulatory feedback loop mechanism that regulates both the expression of the cyclin D1 gene and the activity of pRB, thereby contributing to a G1 phase checkpoint control in cycling mammalian cells.
视网膜母细胞瘤基因产物(pRB)通过与包括潜在致癌性细胞周期蛋白D1在内的众多细胞调节蛋白形成复合物,参与细胞分裂周期的调控。为拓展目前对pRB与D型细胞周期蛋白之间新出现的功能相互作用的认识,我们现在报告细胞周期蛋白D1的表达受pRB正向调控。在表达SV40大T抗原、腺病毒E1A和乳头瘤病毒E7/E6癌基因产物的细胞中,细胞周期蛋白D1的mRNA和蛋白质特异性下调,且这种效应需要E1A完整的RB结合CR2结构域。在遗传性RB缺陷细胞系中也观察到细胞周期蛋白D1的极低表达,其中异位表达的野生型pRB会导致这种G1期细胞周期蛋白的特异性诱导。在功能水平上,抗体介导的细胞周期蛋白D1敲除实验表明,正常情况下G1期进程所需的细胞周期蛋白D1蛋白,对于通过细胞周期的细胞系是可有可无的,这些细胞系中的pRB通过与T抗原、E1A或E7癌蛋白形成复合物而失活,以及在发生RB基因功能丧失突变的细胞中也是如此。在具有突变RB的细胞中,通过实验提高细胞周期蛋白D1的表达并不能恢复对细胞周期蛋白D1功能的需求,而将野生型RB重新引入RB缺陷细胞会导致细胞周期蛋白D1检查点的恢复。这些结果强烈表明,pRB是细胞周期蛋白D1的主要靶点,其细胞周期调节功能在缺乏功能性RB的细胞中变得可有可无。基于包括本研究在内的现有数据,我们提出了一种自动调节反馈环机制模型,该模型调节细胞周期蛋白D1基因的表达和pRB的活性,从而有助于对循环哺乳动物细胞的G1期检查点进行控制。