Department of Cell and Tissue Biology, University of California, San Francisco, San Francisco, CA.
Department of Bioengineering and Therapeutic Sciences, University of California, San Francisco, San Francisco, CA.
J Cell Biol. 2020 Dec 7;219(12). doi: 10.1083/jcb.202004202.
Eukaryotic cells typically form a single, round nucleus after mitosis, and failures to do so can compromise genomic integrity. How mammalian cells form such a nucleus remains incompletely understood. NuMA is a spindle protein whose disruption results in nuclear fragmentation. What role NuMA plays in nuclear integrity, and whether its perceived role stems from its spindle function, are unclear. Here, we use live imaging to demonstrate that NuMA plays a spindle-independent role in forming a single, round nucleus. NuMA keeps the decondensing chromosome mass compact at mitotic exit and promotes a mechanically robust nucleus. NuMA's C terminus binds DNA in vitro and chromosomes in interphase, while its coiled-coil acts as a central regulatory and structural element: it prevents NuMA from binding chromosomes at mitosis, regulates its nuclear mobility, and is essential for nuclear formation. Thus, NuMA plays a structural role over the cell cycle, building and maintaining the spindle and nucleus, two of the cell's largest structures.
真核细胞在有丝分裂后通常会形成一个单一的圆形核,如果不能形成这样的核,就会损害基因组的完整性。哺乳动物细胞如何形成这样的核还不完全清楚。NuMA 是一种纺锤体蛋白,其破坏会导致核碎裂。NuMA 在核完整性中扮演什么角色,以及它的感知作用是否源于其纺锤体功能,尚不清楚。在这里,我们使用活细胞成像来证明 NuMA 在形成单个圆形核方面发挥了一种与纺锤体无关的作用。NuMA 在有丝分裂末期使去凝聚的染色体保持紧凑,并促进了一个机械上坚固的核。NuMA 的 C 端在体外与 DNA 结合,在有丝分裂间期与染色体结合,而其卷曲螺旋则作为一个中央调节和结构元件:它阻止 NuMA 在有丝分裂时与染色体结合,调节其核运动,并对核形成至关重要。因此,NuMA 在细胞周期中发挥结构作用,构建和维持纺锤体和核,这是细胞的两个最大结构。