首页> 外文期刊>Nucleic Acids Research >AUF1 p42 isoform selectively controls both steady-state and PGE2-induced FGF9 mRNA decay.
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AUF1 p42 isoform selectively controls both steady-state and PGE2-induced FGF9 mRNA decay.

机译:AUF1 p42亚型选择性地控制稳态和PGE2诱导的FGF9 mRNA衰减。

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Fibroblast growth factor 9 (FGF9) is an autocrine/paracrine growth factor that plays vital roles in many physiologic processes including embryonic development. Aberrant expression of FGF9 causes human diseases and thus it highlights the importance of controlling FGF9 expression; however, the mechanism responsible for regulation of FGF9 expression is largely unknown. Here, we show the crucial role of an AU-rich element (ARE) in FGF9 3'-untranslated region (UTR) on controlling FGF9 expression. Our data demonstrated that AUF1 binds to this ARE to regulate FGF9 mRNA stability. Overexpression of each isoform of AUF1 (p37, p40, p42 and p45) showed that only the p42 isoform reduced the steady-state FGF9 mRNA. Also, knockdown of p42(AUF1) prolonged the half-life of FGF9 mRNA. The induction of FGF9 mRNA in prostaglandin (PG) E(2)-treated human endometrial stromal cells was accompanied with declined cytoplasmic AUF1. Nevertheless, ablation of AUF1 led to sustained elevation of FGF9 expression in these cells. Our study demonstrated that p42(AUF1) regulates both steady-state and PGE(2)-induced FGF9 mRNA stability through ARE-mediated mRNA degradation. Since almost half of the FGF family members are ARE-containing genes, our findings also suggest that ARE-mediated mRNA decay is a common pathway to control FGFs expression, and it represents a novel RNA regulon to coordinate FGFs homeostasis in various physiological conditions.
机译:成纤维细胞生长因子9(FGF9)是自分泌/旁分泌生长因子,在包括胚胎发育在内的许多生理过程中起着至关重要的作用。 FGF9的异常表达会引起人类疾病,因此突出了控制FGF9表达的重要性。然而,调节FGF9表达的机制在很大程度上尚不清楚。在这里,我们显示了在FGF9 3'非翻译区(UTR)中控制FGF9表达的富盟元素(ARE)的关键作用。我们的数据表明,AUF1与该ARE结合以调节FGF9 mRNA的稳定性。 AUF1的每个同工型(p37,p40,p42和p45)的过表达表明,只有p42同工型降低了稳态FGF9 mRNA。而且,敲除p42(AUF1)可以延长FGF9 mRNA的半衰期。前列腺素(PG)E(2)处理的人子宫内膜基质细胞中FGF9 mRNA的诱导伴随着细胞质AUF1的下降。然而,AUF1的消融导致这些细胞中FGF9表达的持续升高。我们的研究表明p42(AUF1)通过ARE介导的mRNA降解调节稳态和PGE(2)诱导的FGF9 mRNA稳定性。由于FGF家族成员中几乎有一半是含ARE的基因,因此我们的发现还表明ARE介导的mRNA衰变是控制FGF表达的常见途径,它代表了一种新颖的RNA调节剂,可在各种生理条件下协调FGF的稳态。

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