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Human DDX6 effects miRNA-mediated gene silencing via direct binding to CNOT1

机译:人类DDX6通过直接结合CNOT1影响miRNA介导的基因沉默

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摘要

MicroRNAs (miRNAs) play critical roles in a variety of biological processes through widespread effects on protein synthesis. Upon association with the miRNA-induced silencing complex (miRISC), miRNAs repress target mRNA translation and accelerate mRNA decay. Degradation of the mRNA is initiated by shortening of the poly(A) tail by the CCR4–NOT deadenylase complex followed by the removal of the 5′ cap structure and exonucleolytic decay of the mRNA. Here, we report a direct interaction between the large scaffolding subunit of CCR4–NOT, CNOT1, with the translational repressor and decapping activator protein, DDX6. DDX6 binds to a conserved CNOT1 subdomain in a manner resembling the interaction of the translation initiation factor eIF4A with eIF4G. Importantly, mutations that disrupt the DDX6–CNOT1 interaction impair miRISC-mediated gene silencing in human cells. Thus, CNOT1 facilitates recruitment of DDX6 to miRNA-targeted mRNAs, placing DDX6 as a downstream effector in the miRNA silencing pathway.
机译:微小RNA(miRNA)通过对蛋白质合成的广泛影响,在各种生物学过程中发挥关键作用。与miRNA诱导的沉默复合物(miRISC)结合后,miRNA抑制靶mRNA的翻译并加速mRNA的降解。 mRNA的降解是通过CCR4-NOT腺苷酸酶复合物缩短poly(A)尾巴开始的,然后去除5'帽结构和mRNA的外切核酸降解。在这里,我们报道了CCR4-NOT的大型支架亚基CNOT1与翻译阻遏物和去盖化激活蛋白DDX6之间的直接相互作用。 DDX6以类似于翻译起始因子eIF4A与eIF4G相互作用的方式与保守CNOT1子域结合。重要的是,破坏DDX6-CNOT1相互作用的突变会破坏miRISC介导的人类细胞基因沉默。因此,CNOT1促进DDX6募集到miRNA靶向的mRNA,使DDX6作为miRNA沉默途径的下游效应子。

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