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线粒体核仁凝聚物通过高膜曲率驱动外周分裂。

Mitochondrial nucleoid condensates drive peripheral fission through high membrane curvature.

机构信息

Department of Cancer Biology, University of Cincinnati College of Medicine, Cincinnati, OH 45267, USA.

MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, School of Chemistry, Sun Yat-Sen University, IGCME, GBRCE for Functional Molecular Engineering, Guangzhou 510275, China.

出版信息

Cell Rep. 2023 Dec 26;42(12):113472. doi: 10.1016/j.celrep.2023.113472. Epub 2023 Nov 24.

Abstract

Mitochondria are dynamic organelles that undergo fusion and fission events, in which the mitochondrial membrane and DNA (mtDNA) play critical roles. The spatiotemporal organization of mtDNA reflects and impacts mitochondrial dynamics. Herein, to study the detailed dynamics of mitochondrial membrane and mtDNA, we rationally develop a dual-color fluorescent probe, mtGLP, that could be used for simultaneously monitoring mitochondrial membrane and mtDNA dynamics via separate color outputs. By combining mtGLP with structured illumination microscopy to monitor mitochondrial dynamics, we discover the formation of nucleoid condensates in damaged mitochondria. We further reveal that nucleoid condensates promoted the peripheral fission of damaged mitochondria via asymmetric segregation. Through simulations, we find that the peripheral fission events occurred when the nucleoid condensates interacted with the highly curved membrane regions at the two ends of the mitochondria. Overall, we show that mitochondrial nucleoid condensates utilize peripheral fission to maintain mitochondrial homeostasis.

摘要

线粒体是动态细胞器,经历融合和裂变事件,其中线粒体膜和 DNA(mtDNA)发挥关键作用。mtDNA 的时空组织反映并影响线粒体动力学。在此,为了研究线粒体膜和 mtDNA 的详细动力学,我们合理地开发了一种双色荧光探针 mtGLP,它可以通过单独的颜色输出来同时监测线粒体膜和 mtDNA 动力学。通过将 mtGLP 与结构光照明显微镜结合来监测线粒体动力学,我们发现受损线粒体中出现了核体凝聚物。我们进一步揭示了核体凝聚物通过不对称分离促进受损线粒体的外围裂变。通过模拟,我们发现当核体凝聚物与线粒体两端的高度弯曲的膜区域相互作用时,外围裂变事件发生。总的来说,我们表明线粒体核体凝聚物利用外围裂变来维持线粒体的动态平衡。

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