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Modulation of microRNA processing by mismatch repair protein MutLα

机译:错配修复蛋白MutLα对microRNA加工的调控

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摘要

MicroRNAs (miRNAs) are critical post-transcriptional regulators and are derived from hairpin-shaped primary transcripts via a series of processing steps. However, how the production of individual miRNAs is regulated remains largely unknown. Similarly, loss or overexpression of the key mismatch repair protein MutLα (MLH1-PMS2 heterodimer) leads to genome instability and tumorigenesis, but the mechanisms controlling MutLα expression are unknown. Here we demonstrate in vitro and in vivo that MLH1 and miR-422a participate in a feedback loop that regulates the level of both molecules. Using a defined in-vitro miRNA processing system, we show that MutLα stimulates the conversion of pri-miR-422a to pre-miR-422a, as well as the processing of other miRNAs tested, implicating MutLα as a general stimulating factor for miRNA biogenesis. This newly identified MutLα function requires its ATPase and pri-miRNA binding activities. In contrast, miR-422a downregulates MutLα levels by suppressing MLH1 expression through base pairing with the MLH1 3′-untranslated region. A model depicting this feedback mechanism is discussed.
机译:MicroRNA(miRNA)是关键的转录后调节因子,通过一系列加工步骤从发夹状初级转录本中衍生出来。但是,如何调控单个miRNA的产生仍然未知。同样,关键错配修复蛋白MutLα(MLH1-PMS2异二聚体)的丢失或过表达会导致基因组不稳定和肿瘤发生,但是控制MutLα表达的机制尚不清楚。在这里,我们在体内和体外证明MLH1和miR-422a参与调节两个分子水平的反馈环。使用定义的体外miRNA加工系统,我们显示MutLα刺激pri-miR-422a到pre-miR-422a的转化,以及其他测试miRNA的加工,暗示MutLα是miRNA生物发生的一般刺激因子。 。这种新发现的MutLα功能需要其ATPase和pri-miRNA结合活性。相反,miR-422a通过与MLH1 3'非翻译区碱基配对来抑制MLH1表达,从而下调MutLα水平。讨论了描述此反馈机制的模型。

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