Alternative splicing of Mff regulates AMPK-mediated phosphorylation, mitochondrial fission and antiviral response

IF 9.1 2区 医学 Q1 PHARMACOLOGY & PHARMACY Pharmacological research Pub Date : 2024-09-16 DOI:10.1016/j.phrs.2024.107414
Yuki Hanada , Risa Maeda , Takaya Ishihara , Masaki Nakahashi , Yuichi Matsushima , Emi Ogasawara , Toshihiko Oka , Naotada Ishihara
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Abstract

Mitochondrial morphology and function change dynamically in response to intracellular signaling and the surrounding environment. The mitochondrial fission factor Mff, which localizes to the outer mitochondrial membrane, mediates not only mitochondrial fission by recruiting the dynamin-related GTPase Drp1 to mitochondrial fission sites but also the double-stranded RNA-induced antiviral response on mitochondria through mitochondrial antiviral signaling (MAVS). Mff is reported to be regulated by AMP-activated protein kinase (AMPK)-mediated protein phosphorylation and alternative pre-mRNA splicing; however, the relationships among RNA splicing, phosphorylation, and multiple functions of Mff have not been fully understood. Here, we showed that mouse Mff has a tissue-specific splicing pattern, and at least eight Mff splice isoforms were expressed in mouse embryonic fibroblasts (MEFs). We introduced single Mff isoforms into Mff knockout MEFs and found that insertion of exon 6 just after the phosphorylation site, by the alternative splicing, reduced its phosphorylation by AMPK and its functions in mitochondrial fission and the antiviral response. In addition, the underlying mechanism repressing these functions was independent of phosphorylation. These results indicate that multiple functions of Mff on mitochondria are regulated by AMPK-mediated phosphorylation and alternative splicing, under the control of energy metabolism and cellular differentiation.

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Mff 的交替剪接调节 AMPK 介导的磷酸化、线粒体分裂和抗病毒反应。
线粒体的形态和功能会随着细胞内信号和周围环境的变化而发生动态变化。线粒体裂变因子 Mff 定位于线粒体外膜,它不仅通过招募与达能相关的 GTPase Drp1 到线粒体裂变位点来介导线粒体裂变,还通过线粒体抗病毒信号转导(MAVS)介导线粒体上的双链 RNA 诱导的抗病毒反应。据报道,Mff受AMP激活的蛋白激酶(AMPK)介导的蛋白磷酸化和前mRNA的替代剪接调控;然而,RNA剪接、磷酸化和Mff的多种功能之间的关系尚未完全明了。在这里,我们发现小鼠 Mff 具有组织特异性剪接模式,至少有八种 Mff 剪接异构体在小鼠胚胎成纤维细胞(MEFs)中表达。我们将单个 Mff 异构体导入 Mff 基因敲除的 MEFs 中,发现通过替代剪接插入磷酸化位点后的第 6 号外显子,会降低其被 AMPK 磷酸化的程度,并降低其在线粒体裂变和抗病毒反应中的功能。此外,抑制这些功能的潜在机制与磷酸化无关。这些结果表明,Mff 在线粒体上的多种功能受 AMPK 介导的磷酸化和替代剪接的调控,受能量代谢和细胞分化的控制。
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来源期刊
Pharmacological research
Pharmacological research 医学-药学
CiteScore
18.70
自引率
3.20%
发文量
491
审稿时长
8 days
期刊介绍: Pharmacological Research publishes cutting-edge articles in biomedical sciences to cover a broad range of topics that move the pharmacological field forward. Pharmacological research publishes articles on molecular, biochemical, translational, and clinical research (including clinical trials); it is proud of its rapid publication of accepted papers that comprises a dedicated, fast acceptance and publication track for high profile articles.
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