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A small natural molecule promotes mitochondrial fusion through inhibition of the deubiquitinase USP30

机译:一个小的天然分子通过抑制去泛素酶USP30促进线粒体融合

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摘要

Mitochondrial fusion is a highly coordinated process that mixes and unifies the mitochondrial compartment for normal mitochondrial functions and mitochondrial DNA inheritance. Dysregulated mitochondrial fusion causes mitochondrial fragmentation, abnormal mitochondrial physiology and inheritance, and has been causally linked with a number of neuronal diseases. Here, we identified a diterpenoid derivative 15-oxospiramilactone (S3) that potently induced mitochondrial fusion to restore the mitochondrial network and oxidative respiration in cells that are deficient in either Mfn1 or Mfn2. A mitochondria-localized deubiquitinase USP30 is a target of S3. The inhibition of USP30 by S3 leads to an increase of non-degradative ubiquitination of Mfn1/2, which enhances Mfn1 and Mfn2 activity and promotes mitochondrial fusion. Thus, through the use of an inhibitor of USP30, our study uncovers an unconventional function of non-degradative ubiquitination of Mfns in promoting mitochondrial fusion.
机译:线粒体融合是一个高度协调的过程,它混合并统一了线粒体区室,以实现正常的线粒体功能和线粒体DNA遗传。线粒体融合失调会导致线粒体破碎,线粒体生理异常和遗传异常,并与多种神经元疾病有因果关系。在这里,我们确定了一种二萜衍生物15-氧螺螺内酯(S3),它可以有效地诱导线粒体融合,从而在缺乏Mfn1或Mfn2的细胞中恢复线粒体网络和氧化呼吸。线粒体定位的去泛素酶USP30是S3的目标。 S3对USP30的抑制作用导致Mfn1 / 2的非降解泛素化增加,从而增强Mfn1和Mfn2活性并促进线粒体融合。因此,通过使用USP30抑制剂,我们的研究发现Mfns的非降解泛素化在促进线粒体融合中具有非常规功能。

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