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Arabidopsis E2FA stimulates proliferation and endocycle separately through RBR-bound and RBR-free complexes

机译:拟南芥E2FA通过结合RBR和不含RBR的复合物分别刺激增殖和内循环

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摘要

Post-embryonic growth in plants depends on the continuous supply of undifferentiated cells within meristems. Proliferating cells maintain their competence for division by active repression of differentiation and the associated endocycle entry. We show by upregulation and downregulation of E2FA that it is required for maintaining proliferation, as well as for endocycle entry. While E2FB–RBR1 (retinoblastoma-related protein 1) complexes are reduced after sucrose addition or at elevated CYCD3;1 levels, E2FA maintains a stable complex with RBR1 in proliferating cells. Chromatin immunoprecipitation shows that RBR1 binds in the proximity of E2F promoter elements in CCS52A1 and CSS52A2 genes, central regulators for the switch from proliferation to endocycles. Overexpression of a truncated E2FA mutant (E2FAΔRB) lacking the RBR1-binding domain interferes with RBR1 recruitment to promoters through E2FA, leading to decreased meristem size in roots, premature cell expansion and hyperactivated endocycle in leaves. E2F target genes, including CCS52A1 and CCS52A2, are upregulated in E2FAΔRB and e2fa knockout lines. These data suggest that E2FA in complex with RBR1 forms a repressor complex in proliferating cells to inhibit premature differentiation and endocycle entry. Thus, E2FA regulates organ growth via two distinct, sequentially operating pathways.
机译:植物的胚后生长取决于分生组织内未分化细胞的持续供应。增殖细胞通过主动抑制分化和相关的内循环进入来维持其分裂能力。我们通过上调和下调E2FA来表明它是维持增殖以及进入周期内所必需的。尽管添加蔗糖或CYCD3; 1水平升高后,E2FB-RBR1(视网膜母细胞瘤相关蛋白1)复合物减少,但E2FA在增殖细胞中与RBR1保持稳定的复合物。染色质的免疫沉淀表明,RBR1在CCS52A1和CSS52A2基因的E2F启动子元件附近结合,这是从增殖向内循环转换的主要调节因子。缺少RBR1结合域的截短的E2FA突变体(E2FA ΔRB)的过表达会干扰RBR1通过E2FA向启动子募集,从而导致根的分生组织大小减小,细胞过早膨胀和叶片的超活化内循环。 E2F靶基因,包括CCS52A1和CCS52A2,在E2FA ΔRB和e2fa基因敲除品系中被上调。这些数据表明,E2FA与RBR1形成复合物,在增殖细胞中形成阻遏物复合物,从而抑制过早分化和进入周期。因此,E2FA通过两种不同的顺序操作途径调节器官的生长。

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