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首页> 外文期刊>Molecular cell >GW182 proteins directly recruit cytoplasmic deadenylase complexes to miRNA targets.
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GW182 proteins directly recruit cytoplasmic deadenylase complexes to miRNA targets.

机译:GW182蛋白直接募集细胞质去腺苷酸酶复合物至miRNA靶标。

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摘要

miRNAs are posttranscriptional regulators of gene expression that associate with Argonaute and GW182 proteins to repress translation and/or promote mRNA degradation. miRNA-mediated mRNA degradation is initiated by deadenylation, although it is not known whether deadenylases are recruited to the mRNA target directly or by default, as a consequence of a translational block. To answer this question, we performed a screen for potential interactions between the Argonaute and GW182 proteins and subunits of the two cytoplasmic deadenylase complexes. We found that human GW182 proteins recruit the PAN2-PAN3 and CCR4-CAF1-NOT deadenylase complexes through direct interactions with PAN3 and NOT1, respectively. These interactions are critical for silencing and are conserved in D. melanogaster. Our findings reveal that GW182 proteins provide a docking platform through which deadenylase complexes gain access to the poly(A) tail of miRNA targets to promote their deadenylation, and they further indicate that deadenylation is a direct effect of miRNA regulation.
机译:miRNA是基因表达的转录后调节剂,与Argonaute和GW182蛋白相关联以抑制翻译和/或促进mRNA降解。 miRNA介导的mRNA降解是由腺苷酸化作用引发的,尽管尚不知道由于翻译阻滞,是否将腺苷酸酶直接或默认募集到mRNA靶标上。为了回答这个问题,我们对Argonaute和GW182蛋白与两个细胞质去甲腺苷酸酶复合物的亚基之间的潜在相互作用进行了筛选。我们发现人类GW182蛋白分别通过与PAN3和NOT1的直接相互作用募集PAN2-PAN3和CCR4-CAF1-NOT腺苷酸酶复合物。这些相互作用对于沉默至关重要,在黑腹果蝇中是保守的。我们的发现表明,GW182蛋白提供了一个停靠平台,通过该平台,腺苷酸酶复合物可进入miRNA目标的poly(A)尾部以促进其腺苷酸化,并且它们进一步表明,腺苷酸化是miRNA调控的直接作用。

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