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Human disease-associated single nucleotide polymorphism changes the orientation of DROSHA on pri-mir-146a

机译:人类疾病相关的单核苷酸多态性改变了Pri-miR-146a上Drosha的取向

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摘要

The Microprocessor complex of DROSHA and DGCR8 initiates the biosynthesis of microRNAs (miRNAs) by processing primary miRNAs (pri-miRNAs). The Microprocessor can be oriented on pri-miRNAs in opposite directions to generate productive and unproductive cleavages at their basal and apical junctions, respectively. However, only the productive cleavage gives rise to miRNAs. A single nucleotide polymorphism (SNP, rs2910164) in pri-mir-146a is associated with various human diseases. Although this SNP was found to reduce the expression of miRNA, it is still not known if it affects the activity of the Microprocessor directly, and how it functions. In this study, we revealed that the SNP creates an unexpected mGHG motif at the apical junction of pri-mir-146a. This mGHG motif interacts with the double-stranded RNA-binding domain (dsRBD) of DROSHA, switching its orientation on pri-mir-146a from the basal to the apical junction. As a result, the SNP facilitates Microprocessor to cleave SNP-pri-mir-146a at its unproductive sites. Our findings help to elucidate the molecular mechanism that explains how the disease-associated SNP modulates the biogenesis of pri-mir-146a and thereby affects its cellular functions.
机译:DROSHA和DGCR8的微处理器综合体通过加工原发性miRNA(PRI-MIRNA)来启动MicroRNAS(miRNA)的生物合成。微处理器可以在相反方向上取向pri-miRNA,以分别在其基础和顶端连接处产生生产性和非生产性裂解。但是,只有生产性乳化物产生米兰斯。 PRI-miR-146a中的单个核苷酸多态性(SNP,RS2910164)与各种人类疾病有关。虽然发现该SNP降低miRNA的表达,但如果它直接影响微处理器的活动以及其函数如何,仍然不知道。在这项研究中,我们透露,SNP在Pri-miR-146a的顶端连接处创造出意外的MGHG主题。该MGHG基序与DROSHA的双链RNA结合结构域(DSRBD)相互作用,将其取向从PRI-miR-146a的方向从基站到顶端结。结果,SNP促进微处理器在其非生产性位点处切割SNP-PRI-miR-146a。我们的研究结果有助于阐明解释疾病相关的SNP如何调节PRI-MIR-146A的生物发生的分子机制,从而影响其蜂窝功能。

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