Institut National de la Santé et de la Recherche Médicale, Unité 1036, Biologie du Cancer et de l'Infection, Grenoble F-38054, France.
Mol Biol Cell. 2011 Oct;22(19):3625-33. doi: 10.1091/mbc.E11-02-0149. Epub 2011 Aug 10.
Tis11b/BRF1 belongs to the tristetraprolin family, the members of which are involved in AU-rich-dependent regulation of mRNA stability/degradation. Mouse inactivation of the Tis11b gene has revealed disorganization of the vascular network and up-regulation of the proangiogenic factor VEGF. However, the VEGF deregulation alone cannot explain the phenotype of Tis11b knockouts. Therefore we investigated the role of Tis11b in expression of Dll4, another angiogenic gene for which haploinsufficiency is lethal. In this paper, we show that Tis11b silencing in endothelial cells leads to up-regulation of Dll4 protein and mRNA expressions, indicating that Dll4 is a physiological target of Tis11b. Tis11b protein binds to endogenous Dll4 mRNA, and represses mRNA expression without affecting its stability. In the Dll4 mRNA 3' untranslated region, we identified one particular AUUUA motif embedded in a weak noncanonical polyadenylation (poly(A)) signal as the major Tis11b-binding site. Moreover, we observed that inhibition of Tis11b expression changes the ratio between mRNAs that are cleaved or read through at the poly(A) signal position, suggesting that Tis11b can interfere with mRNA cleavage and poly(A) efficiency. Last, we report that this Tis11b-mediated mechanism is used by endothelial cells under hypoxia for controlling Dll4 mRNA levels. This work constitutes the first description of a new function for Tis11b in mammalian cell mRNA 3'-end maturation.
Tis11b/BRF1 属于 tristetraprolin 家族,该家族成员参与依赖 AU 丰富的 mRNA 稳定性/降解的调节。小鼠 Tis11b 基因失活导致血管网络紊乱和促血管生成因子 VEGF 的上调。然而,VEGF 的失调本身并不能解释 Tis11b 敲除体的表型。因此,我们研究了 Tis11b 在另一个血管生成基因 Dll4 表达中的作用,该基因的单倍不足是致命的。在本文中,我们表明内皮细胞中 Tis11b 的沉默导致 Dll4 蛋白和 mRNA 表达的上调,表明 Dll4 是 Tis11b 的生理靶标。Tis11b 蛋白与内源性 Dll4 mRNA 结合,并在不影响其稳定性的情况下抑制 mRNA 表达。在 Dll4 mRNA 3'非翻译区,我们鉴定出一个特定的 AUUUA 基序嵌入在一个弱非典型多聚腺苷酸化(poly(A))信号中,作为 Tis11b 的主要结合位点。此外,我们观察到抑制 Tis11b 表达改变了在 poly(A)信号位置被切割或通读的 mRNA 之间的比例,表明 Tis11b 可以干扰 mRNA 切割和 poly(A)效率。最后,我们报告内皮细胞在缺氧下使用 Tis11b 介导的机制来控制 Dll4 mRNA 水平。这项工作首次描述了 Tis11b 在哺乳动物细胞 mRNA 3'-末端成熟中的新功能。