Brown J R, Nigh E, Lee R J, Ye H, Thompson M A, Saudou F, Pestell R G, Greenberg M E
Division of Neuroscience, Children's Hospital, Boston, Massachusetts 02115, USA.
Mol Cell Biol. 1998 Sep;18(9):5609-19. doi: 10.1128/MCB.18.9.5609.
Expression of the fos family of transcription factors is stimulated by growth factors that induce quiescent cells to reenter the cell cycle, but the cellular targets of the Fos family that regulate cell cycle reentry have not been identified. To address this issue, mice that lack two members of the fos family, c-fos and fosB, were derived. The fosB-/- c-fos-/- mice are similar in phenotype to c-fos-/- mice but are 30% smaller. This decrease in size is consistent with an abnormality in cell proliferation. Fibroblasts derived from fosB-/- c-fos-/- mice were found to have a defect in proliferation that results at least in part from a failure to induce cyclin D1 following serum-stimulated cell cycle reentry. Although definitive evidence that c-Fos and FosB directly induce cyclin D1 transcription will require further analysis, these findings raise the possibility that c-Fos and FosB are either direct or indirect transcriptional regulators of the cyclin D1 gene and may function as a critical link between serum stimulation and cell cycle progression.
转录因子Fos家族的表达受生长因子刺激,这些生长因子可诱导静止细胞重新进入细胞周期,但调节细胞周期重新进入的Fos家族的细胞靶点尚未明确。为解决这一问题,我们培育出了缺乏Fos家族两个成员c-Fos和FosB的小鼠。FosB-/- c-Fos-/-小鼠的表型与c-Fos-/-小鼠相似,但体型小30%。这种体型减小与细胞增殖异常一致。研究发现,源自FosB-/- c-Fos-/-小鼠的成纤维细胞存在增殖缺陷,这至少部分是由于血清刺激细胞周期重新进入后未能诱导细胞周期蛋白D1所致。尽管c-Fos和FosB直接诱导细胞周期蛋白D1转录的确切证据还需要进一步分析,但这些发现增加了c-Fos和FosB是细胞周期蛋白D1基因直接或间接转录调节因子的可能性,并且可能在血清刺激和细胞周期进程之间起关键连接作用。