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人线粒体 Fis1 在 G2/M 转换时与细胞周期调节剂连接。

Human mitochondrial Fis1 links to cell cycle regulators at G2/M transition.

机构信息

Department of Biochemistry, Ajou University School of Medicine, 5 Wonchon-dong, Yeongtong-gu, Suwon, 443-721, Korea.

出版信息

Cell Mol Life Sci. 2014 Feb;71(4):711-25. doi: 10.1007/s00018-013-1428-8. Epub 2013 Aug 2.

Abstract

We have previously shown that prolonged mitochondrial elongation triggers cellular senescence. Here, we report that enforced mitochondrial elongation by hFis1 depletion caused a severe defect in cell cycle progression through G2/M phase (~3-fold reduction in mitotic index; p < 0.01). Reintroduction of Myc-hFis1 to these cells induced mitochondrial fragmentation and restored the cell cycle, indicating that morphodynamic changes of mitochondria closely link to the cell cycle. In hFis1-knockdown cells, cell cycle regulators governing the G2/M phase, including cyclin A, cyclin B1, cyclin-dependent kinase1 (Cdk1), polo-like kinase1 (Plk1), aurora kinase A and Mad2, were significantly suppressed (2- to 10-fold). Notably, however, when mitochondrial fragmentation was induced by double knockdown of hFis1 and Opa1, the cells regained their ability to enter mitosis, and cell cycle regulators were rebounded. Reconstitution of the cyclin B1/Cdk1 complex, a major regulator of the G2/M transition, failed to restore mitotic entry in hFis1-depleted cells. In contrast, expression of Plk1, an upstream regulator of the cyclin B1/Cdk1 complex, or FoxM1 (forkhead box M1), a master transcriptional factor for the cell cycle regulators of G2/M phase, restored the cell cycle in these cells. Our findings suggest that mitochondrial fission molecule hFis1 ensures the proper cell division by interplay with the cell cycle machinery.

摘要

我们之前已经表明,线粒体的延长会引发细胞衰老。在这里,我们报告说,通过 hFis1 耗竭强制延长线粒体导致细胞周期在 G2/M 期进展严重缺陷(有丝分裂指数降低约 3 倍;p < 0.01)。将 Myc-hFis1 重新引入这些细胞中会诱导线粒体碎片化并恢复细胞周期,表明线粒体的形态动力学变化与细胞周期密切相关。在 hFis1 敲低的细胞中,控制 G2/M 期的细胞周期调节剂,包括细胞周期蛋白 A、细胞周期蛋白 B1、细胞周期蛋白依赖性激酶 1(Cdk1)、丝氨酸/苏氨酸激酶 Plk1、极光激酶 A 和 Mad2,均受到显著抑制(2 至 10 倍)。然而,值得注意的是,当通过 hFis1 和 Opa1 的双重敲低诱导线粒体碎片化时,细胞恢复了进入有丝分裂的能力,细胞周期调节剂得到恢复。周期蛋白 B1/Cdk1 复合物的重建,G2/M 过渡的主要调节剂,未能恢复 hFis1 耗竭细胞的有丝分裂进入。相比之下,Plk1 的表达,周期蛋白 B1/Cdk1 复合物的上游调节剂,或 FoxM1(叉头框 M1),G2/M 期细胞周期调节剂的主要转录因子,在这些细胞中恢复了细胞周期。我们的发现表明,线粒体裂变分子 hFis1 通过与细胞周期机制的相互作用确保了适当的细胞分裂。

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