Institute for Genetics, University of Cologne, Cologne, Germany.
Cologne Excellence Cluster on Cellular Stress Responses in Aging-Associated Diseases, University of Cologne, Cologne, Germany.
Elife. 2022 May 13;11:e74552. doi: 10.7554/eLife.74552.
Proliferating cells undergo metabolic changes in synchrony with cell cycle progression and cell division. Mitochondria provide fuel, metabolites, and ATP during different phases of the cell cycle, however it is not completely understood how mitochondrial function and the cell cycle are coordinated. CLUH (clustered mitochondria homolog) is a post-transcriptional regulator of mRNAs encoding mitochondrial proteins involved in oxidative phosphorylation and several metabolic pathways. Here, we show a role of CLUH in regulating the expression of astrin, which is involved in metaphase to anaphase progression, centrosome integrity, and mTORC1 inhibition. We find that CLUH binds both the mRNA and its product astrin, and controls the synthesis and the stability of the full-length astrin-1 isoform. We show that CLUH interacts with astrin-1 specifically during interphase. Astrin-depleted cells show mTORC1 hyperactivation and enhanced anabolism. On the other hand, cells lacking CLUH show decreased astrin levels and increased mTORC1 signaling, but cannot sustain anaplerotic and anabolic pathways. In absence of CLUH, cells fail to grow during G1, and progress faster through the cell cycle, indicating dysregulated matching of growth, metabolism, and cell cycling. Our data reveal a role of CLUH in coupling growth signaling pathways and mitochondrial metabolism with cell cycle progression.
增殖细胞在细胞周期进程和细胞分裂中与细胞周期同步经历代谢变化。线粒体在细胞周期的不同阶段提供燃料、代谢物和 ATP,然而,线粒体功能和细胞周期如何协调还不完全清楚。CLUH(聚集线粒体同源物)是参与氧化磷酸化和几种代谢途径的线粒体蛋白编码 mRNA 的转录后调节剂。在这里,我们显示了 CLUH 在调节 astrin 表达中的作用, astrin 参与中期到后期的进展、中心体完整性和 mTORC1 抑制。我们发现 CLUH 结合了 mRNA 和其产物 astrin,并控制全长 astrin-1 同工型的合成和稳定性。我们表明,CLUH 在间期与 astrin-1 特异性相互作用。 Astrin 耗尽的细胞显示 mTORC1 过度激活和增强的合成代谢。另一方面,缺乏 CLUH 的细胞显示 astrin 水平降低和 mTORC1 信号增加,但不能维持氨酰基和合成代谢途径。在没有 CLUH 的情况下,细胞在 G1 期间无法生长,并更快地通过细胞周期,表明生长、代谢和细胞周期的匹配失调。我们的数据揭示了 CLUH 在将生长信号通路与线粒体代谢与细胞周期进程相耦合中的作用。