Department of Genetics and Microbiology, University of Pavia, Via Ferrata 1, 27100, Pavia, Italy.
Plant Mol Biol. 2010 Mar;72(4-5):381-95. doi: 10.1007/s11103-009-9577-8. Epub 2009 Nov 25.
An emerging view of plant cell cycle regulators, including the E2F transcription factors, implicates them in the integration of cell proliferation and development. Arabidopsis encodes six E2F proteins that can act as activators or repressors of E2F-responsive genes. E2FA, E2FB and E2FC interact with the retinoblastoma-like RBR protein and bind to DNA together with their DP partners. In contrast, E2FD, E2FE and E2FF (also known as DEL2, DEL1 and DEL3) are atypical E2Fs that possess duplicated DNA binding regions, lack trans-activating and RBR-binding domains and are believed to act as transcriptional inhibitors/repressors. E2FE/DEL1 has been shown to inhibit the endocycle and E2FF/DEL3 appears to control cell expansion but the role of E2FD/DEL2 has not been reported so far. In this study, we investigated the expression of E2FD/DEL2 and analysed the accumulation of its product. These studies revealed that E2FD/DEL2 accumulation is subject to negative post-translational regulation mediated by the plant hormone auxin. Moreover, the analysis of mutant and transgenic plants characterized by altered expression of E2FD/DEL2 has revealed that this atypical E2F can affect plant growth by promoting cell proliferation and repressing cell elongation. Overexpression of E2FD/DEL2 increased the expression of E2FA, E2FB and E2FE/DEL1 whereas its inactivation led to the up-regulation of genes encoding repressors of cell division. These results suggest that E2FD/DEL2 is part of a regulatory network that controls the balance between cell proliferation and development in Arabidopsis.
植物细胞周期调控因子(包括 E2F 转录因子)的新观点表明它们参与了细胞增殖和发育的整合。拟南芥编码六种 E2F 蛋白,它们可以作为 E2F 反应基因的激活剂或抑制剂。E2FA、E2FB 和 E2FC 与视黄醇结合蛋白样 RBR 蛋白相互作用,并与它们的 DP 伴侣一起结合到 DNA 上。相比之下,E2FD、E2FE 和 E2FF(也称为 DEL2、DEL1 和 DEL3)是具有重复 DNA 结合区的非典型 E2F,缺乏转录激活和 RBR 结合结构域,被认为是转录抑制剂/抑制剂。已经表明 E2FE/DEL1 抑制内循环,E2FF/DEL3 似乎控制细胞扩张,但迄今为止尚未报道 E2FD/DEL2 的作用。在这项研究中,我们研究了 E2FD/DEL2 的表达,并分析了其产物的积累。这些研究表明,E2FD/DEL2 的积累受到植物激素生长素介导的负翻译后调控。此外,对表达 E2FD/DEL2 发生改变的突变体和转基因植物的分析表明,这种非典型 E2F 可以通过促进细胞增殖和抑制细胞伸长来影响植物生长。E2FD/DEL2 的过表达增加了 E2FA、E2FB 和 E2FE/DEL1 的表达,而其失活导致编码细胞分裂抑制剂的基因上调。这些结果表明,E2FD/DEL2 是调控网络的一部分,该网络控制拟南芥中细胞增殖和发育之间的平衡。