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Cdk8/CDK19 通过磷酸化 Drp1 促进线粒体裂变,并在果蝇中表型上抑制 pink1 缺失。

Cdk8/CDK19 promotes mitochondrial fission through Drp1 phosphorylation and can phenotypically suppress pink1 deficiency in Drosophila.

机构信息

Department of Molecular Biology and Biochemistry, Simon Fraser University, Burnaby, V5A1S6, BC, Canada.

Center for Cell Biology, Development and Disease, Simon Fraser University, Burnaby, V5A1S6, BC, Canada.

出版信息

Nat Commun. 2024 Apr 18;15(1):3326. doi: 10.1038/s41467-024-47623-8.

Abstract

Cdk8 in Drosophila is the orthologue of vertebrate CDK8 and CDK19. These proteins have been shown to modulate transcriptional control by RNA polymerase II. We found that neuronal loss of Cdk8 severely reduces fly lifespan and causes bang sensitivity. Remarkably, these defects can be rescued by expression of human CDK19, found in the cytoplasm of neurons, suggesting a non-nuclear function of CDK19/Cdk8. Here we show that Cdk8 plays a critical role in the cytoplasm, with its loss causing elongated mitochondria in both muscles and neurons. We find that endogenous GFP-tagged Cdk8 can be found in both the cytoplasm and nucleus. We show that Cdk8 promotes the phosphorylation of Drp1 at S616, a protein required for mitochondrial fission. Interestingly, Pink1, a mitochondrial kinase implicated in Parkinson's disease, also phosphorylates Drp1 at the same residue. Indeed, overexpression of Cdk8 significantly suppresses the phenotypes observed in flies with low levels of Pink1, including elevated levels of ROS, mitochondrial dysmorphology, and behavioral defects. In summary, we propose that Pink1 and Cdk8 perform similar functions to promote Drp1-mediated fission.

摘要

果蝇中的 Cdk8 是脊椎动物 CDK8 和 CDK19 的同源物。这些蛋白质已被证明可以调节 RNA 聚合酶 II 的转录控制。我们发现神经元中 Cdk8 的缺失严重缩短了果蝇的寿命并导致其对 bang 敏感。值得注意的是,这些缺陷可以通过表达神经元细胞质中的人 CDK19 来挽救,这表明 CDK19/Cdk8 具有非核功能。在这里,我们表明 Cdk8 在细胞质中发挥关键作用,其缺失导致肌肉和神经元中线粒体伸长。我们发现内源性 GFP 标记的 Cdk8 可以在细胞质和核内都被发现。我们表明 Cdk8 促进了 Drp1 在 S616 位点的磷酸化,该位点是线粒体分裂所必需的蛋白质。有趣的是,与帕金森病相关的线粒体激酶 Pink1 也在相同的残基上磷酸化 Drp1。事实上,Cdk8 的过表达显著抑制了 Pink1 水平降低的果蝇中观察到的表型,包括 ROS 水平升高、线粒体形态异常和行为缺陷。总之,我们提出 Pink1 和 Cdk8 具有相似的功能,可以促进 Drp1 介导的分裂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/650a/11026413/3dee3505fe67/41467_2024_47623_Fig1_HTML.jpg

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