Department of Physiology, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.
The Pennsylvania Muscle Institute, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.
Nature. 2021 Mar;591(7851):659-664. doi: 10.1038/s41586-021-03309-5. Epub 2021 Mar 3.
Symmetric cell division requires the even partitioning of genetic information and cytoplasmic contents between daughter cells. Whereas the mechanisms coordinating the segregation of the genome are well known, the processes that ensure organelle segregation between daughter cells remain less well understood. Here we identify multiple actin assemblies with distinct but complementary roles in mitochondrial organization and inheritance in mitosis. First, we find a dense meshwork of subcortical actin cables assembled throughout the mitotic cytoplasm. This network scaffolds the endoplasmic reticulum and organizes three-dimensional mitochondrial positioning to ensure the equal segregation of mitochondrial mass at cytokinesis. Second, we identify a dynamic wave of actin filaments reversibly assembling on the surface of mitochondria during mitosis. Mitochondria sampled by this wave are enveloped within actin clouds that can spontaneously break symmetry to form elongated comet tails. Mitochondrial comet tails promote randomly directed bursts of movement that shuffle mitochondrial position within the mother cell to randomize inheritance of healthy and damaged mitochondria between daughter cells. Thus, parallel mechanisms mediated by the actin cytoskeleton ensure both equal and random inheritance of mitochondria in symmetrically dividing cells.
对称细胞分裂需要在子细胞之间均匀分配遗传信息和细胞质内容。虽然协调基因组分离的机制已经众所周知,但确保细胞器在子细胞之间分配的过程仍了解较少。在这里,我们确定了多个肌动蛋白组装物在有丝分裂中线粒体组织和遗传中的作用不同但互补。首先,我们发现整个有丝分裂细胞质中组装了密集的皮质下肌动蛋白电缆网络。该网络支撑内质网并组织三维线粒体定位,以确保在胞质分裂时线粒体质量的均等分配。其次,我们发现有丝分裂过程中在线粒体表面可逆组装的动态 actin 丝波。该波采样的线粒体被包裹在 actin 云中,这些 actin 云可以自发打破对称性,形成拉长的彗星尾巴。线粒体彗星尾巴促进随机定向的运动爆发,在母细胞内随机移动线粒体位置,从而在子细胞之间随机分配健康和受损线粒体的遗传。因此,由肌动蛋白细胞骨架介导的平行机制确保了对称分裂细胞中线粒体的均等和随机遗传。