首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Pre-microRNA-149 (miR-149) Genetic Variation Affects miR-149 Maturation and Its Ability to Regulate the Puma Protein in Apoptosis
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A Pre-microRNA-149 (miR-149) Genetic Variation Affects miR-149 Maturation and Its Ability to Regulate the Puma Protein in Apoptosis

机译:微小RNA-149(miR-149)的遗传变异影响miR-149的成熟及其调节细胞凋亡中彪马蛋白的能力。

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摘要

MicroRNAs (miRNAs) are small, single-stranded, noncoding RNAs that function as negative regulators of gene expression. They are transcribed from endogenous DNA and form hairpin structures (termed as pre-miRNAs) that are processed to form mature miRNAs. It remains largely unknown as to the molecular consequences of the natural genetic variation in pre-miRNAs. Here, we report that an A→G polymorphism (rs71428439) is located in Homo sapiens miR-149 stem-loop region. This polymorphism results in a change in the structure of the miR-149 precursor. Our results showed that the genotype distribution of this polymorphism in myocardial infarction cases was significantly different from that in the control subjects. We examined the biological significance of this polymorphism on the production of mature miR-149, and we observed that the G-allelic miR-149 precursor displayed a lower production of mature miR-149 compared with the A-allelic one. Further investigations disclosed that miR-149 could withstand mitochondrial fission and apoptosis through targeting the pro-apoptotic factor p53-up-regulated modulator of apoptosis (Puma). Enforced expression of miR-149 promoted cell survival, whereas knockdown of miR-149 rendered cells to be sensitive to apoptotic stimulation. Intriguingly, the A to G variation led pre-miR-149 to elicit an attenuated effect on the inhibition of mitochondrial fission and apoptosis. Finally, this polymorphism exerts its influence on cardiac function in the mouse model of myocardial infarction. These data suggest that this polymorphism in the miR-149 precursor may result in important phenotypic traits of myocardial infarction. Our findings warrant further investigations on the relationship between miR-149 polymorphism and myocardial infarction.
机译:微小RNA(miRNA)是小的单链非编码RNA,可充当基因表达的负调节剂。它们从内源性DNA转录而来,形成发夹结构(称为pre-miRNA),该结构被加工成成熟的miRNA。关于pre-miRNA的自然遗传变异的分子后果,目前仍是未知之数。在这里,我们报道一个A→G多态性(rs71428439)位于智人miR-149茎环区域。该多态性导致miR-149前体的结构改变。我们的结果表明,在心肌梗死病例中这种多态性的基因型分布与对照组相比有显着差异。我们检查了这种多态性对成熟miR-149产生的生物学意义,并且我们观察到与A等位基因相比,G等位基因miR-149前体显示出更低的成熟miR-149产量。进一步的研究表明,miR-149通过靶向促凋亡因子p53上调的凋亡调节剂(Puma)可以承受线粒体裂变和凋亡。 miR-149的强制表达促进细胞存活,而miR-149的敲低则使细胞对凋亡刺激敏感。有趣的是,A至G变异导致pre-miR-149对线粒体裂变和凋亡的抑制作用减弱。最后,这种多态性在心肌梗塞的小鼠模型中对心脏功能产生影响。这些数据表明,miR-149前体中的这种多态性可能导致心肌梗塞的重要表型性状。我们的发现值得进一步研究miR-149多态性与心肌梗死之间的关系。

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