Schweisgut Judith, Schutt Christian, Wüst Stas, Wietelmann Astrid, Ghesquière Bart, Carmeliet Peter, Dröse Stefan, Korach Kenneth S, Braun Thomas, Boettger Thomas
Department of Cardiac Development and Remodelling, Max Planck Institute for Heart and Lung Research, Bad Nauheim, Germany.
MRI Service Group, Max Planck Institute for Heart and Lung Research, Bad Nauheim, Germany.
EMBO J. 2017 May 2;36(9):1199-1214. doi: 10.15252/embj.201695988. Epub 2017 Mar 17.
Control of energy homeostasis and metabolism is achieved by integrating numerous pathways, and miRNAs are involved in this process by regulating expression of multiple target genes. However, relatively little is known about the posttranscriptional processing of miRNAs and a potential role for the precursors they derive from. Here, we demonstrate that mature miRNA-22 is more abundant in muscle from male mice relative to females and that this enables sex-specific regulation of muscular lipid metabolism and body weight by repressing estrogen receptor alpha (ERα) expression. We found that the ERα adjusts its own activity by preventing processing of miR-22 via direct binding to a conserved ERα-binding element within the primary miR-22 precursor. Mutation of the ERα binding site within the pri-miR-22 eliminates sex-specific differences in miR-22 expression. We reason that the resulting tissue selective negative feedback regulation is essential to establish sex-specific differences in muscle metabolism and body weight development.
能量稳态和代谢的控制是通过整合众多途径实现的,而微小RNA(miRNA)通过调节多个靶基因的表达参与这一过程。然而,对于miRNA的转录后加工及其来源前体的潜在作用了解相对较少。在这里,我们证明成熟的miRNA-22在雄性小鼠肌肉中相对于雌性更为丰富,这通过抑制雌激素受体α(ERα)的表达实现了对肌肉脂质代谢和体重的性别特异性调节。我们发现,ERα通过直接结合初级miR-22前体中一个保守的ERα结合元件来阻止miR-22的加工,从而调节自身活性。初级miR-22中ERα结合位点的突变消除了miR-22表达的性别特异性差异。我们推断,由此产生的组织选择性负反馈调节对于建立肌肉代谢和体重发育中的性别特异性差异至关重要。