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NF90-NF45的过表达抑制成肌微小RNA生物合成,导致骨骼肌萎缩和核中心肌纤维的形成。

Overexpression of NF90-NF45 Represses Myogenic MicroRNA Biogenesis, Resulting in Development of Skeletal Muscle Atrophy and Centronuclear Muscle Fibers.

作者信息

Todaka Hiroshi, Higuchi Takuma, Yagyu Ken-ichi, Sugiyama Yasunori, Yamaguchi Fumika, Morisawa Keiko, Ono Masafumi, Fukushima Atsuki, Tsuda Masayuki, Taniguchi Taketoshi, Sakamoto Shuji

机构信息

Laboratory of Molecular Biology, Science Research Center, Kochi Medical School, Kochi, Japan.

Department of Gastroenterology and Hepatology, Kochi Medical School, Kochi, Japan.

出版信息

Mol Cell Biol. 2015 Jul;35(13):2295-308. doi: 10.1128/MCB.01297-14. Epub 2015 Apr 27.

Abstract

MicroRNAs (miRNAs) are involved in the progression and suppression of various diseases through translational inhibition of target mRNAs. Therefore, the alteration of miRNA biogenesis induces several diseases. The nuclear factor 90 (NF90)-NF45 complex is known as a negative regulator in miRNA biogenesis. Here, we showed that NF90-NF45 double-transgenic (dbTg) mice develop skeletal muscle atrophy and centronuclear muscle fibers in adulthood. Subsequently, we found that the levels of myogenic miRNAs, including miRNA 133a (miR-133a), which promote muscle maturation, were significantly decreased in the skeletal muscle of NF90-NF45 dbTg mice compared with those in wild-type mice. However, levels of primary transcripts of the miRNAs (pri-miRNAs) were clearly elevated in NF90-NF45 dbTg mice. This result indicated that the NF90-NF45 complex suppressed miRNA production through inhibition of pri-miRNA processing. This finding was supported by the fact that processing of pri-miRNA 133a-1 (pri-miR-133a-1) was inhibited via binding of NF90-NF45 to the pri-miRNA. Finally, the level of dynamin 2, a causative gene of centronuclear myopathy and concomitantly a target of miR-133a, was elevated in the skeletal muscle of NF90-NF45 dbTg mice. Taken together, we conclude that the NF90-NF45 complex induces centronuclear myopathy through increased dynamin 2 expression by an NF90-NF45-induced reduction of miR-133a expression in vivo.

摘要

微小RNA(miRNA)通过对靶mRNA的翻译抑制作用参与各种疾病的进展和抑制。因此,miRNA生物合成的改变会诱发多种疾病。核因子90(NF90)-NF45复合物是已知的miRNA生物合成的负调节因子。在此,我们发现NF90-NF45双转基因(dbTg)小鼠在成年后会出现骨骼肌萎缩和核中心肌纤维。随后,我们发现与野生型小鼠相比,NF90-NF45 dbTg小鼠骨骼肌中促进肌肉成熟的成肌miRNA,包括miRNA 133a(miR-133a)的水平显著降低。然而,NF90-NF45 dbTg小鼠中miRNA的初级转录本(pri-miRNA)水平明显升高。这一结果表明,NF90-NF45复合物通过抑制pri-miRNA加工来抑制miRNA的产生。NF90-NF45与pri-miRNA结合抑制pri-miRNA 133a-1(pri-miR-133a-1)的加工这一事实支持了这一发现。最后,核中心肌病的致病基因动力蛋白2(dynamin 2)同时也是miR-133a的靶标,其在NF90-NF45 dbTg小鼠骨骼肌中的水平升高。综上所述,我们得出结论,NF90-NF45复合物通过在体内降低miR-133a表达从而增加动力蛋白2的表达来诱发核中心肌病。

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