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The Nuclear Mitotic Apparatus (NuMA) Protein: A Key Player for Nuclear Formation, Spindle Assembly, and Spindle Positioning

机译:核有机丝仪(NUMA)蛋白质:核形成,主轴组件和主轴定位的关键球员

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The nuclear mitotic apparatus (NuMA) protein is well conserved in vertebrates, and dynamically changes its subcellular localization from the interphase nucleus to the mitotic/meiotic spindle poles and the mitotic cell cortex. At these locations, NuMA acts as a key structural hub in nuclear formation, spindle assembly, and mitotic spindle positioning, respectively. To achieve its variable functions, NuMA interacts with multiple factors, including DNA, microtubules, the plasma membrane, importins, and cytoplasmic dynein. The binding of NuMA to dynein via its N-terminal domain drives spindle pole focusing and spindle positioning, while multiple interactions through its C-terminal region define its subcellular localizations and functions. In addition, NuMA can self-assemble into high-ordered structures which likely contribute to spindle positioning and nuclear formation. In this review, we summarize recent advances in NuMA's domains, functions and regulations, with a focus on human NuMA, to understand how and why vertebrate NuMA participates in these functions in comparison with invertebrate NuMA-related proteins.
机译:核有机丝仪(NUMA)蛋白在脊椎动物中很好地保存,并且动态地将其从间核的亚细胞定位改变为有丝分裂/减数分裂的主轴杆和有丝分裂细胞皮质。在这些位置,NUMA分别作为核形成,主轴组件和有丝分裂主轴定位的关键结构轮。为了实现其可变函数,NUMA与多种因素相互作用,包括DNA,微管,质膜,IMPORTINE和细胞质DYNIN。 NUMA至DYNIN通过其N末端域驱动器的结合轴极聚焦和主轴定位,而通过其C终端区域的多个相互作用定义其亚细胞本地化和功能。此外,NUMA可以自组装成高订货结构,这可能有助于主轴定位和核形成。在这篇综述中,我们总结了Numa的域名,职能和法规的最新进展,重点是人numa,了解脊椎动物Numa与无脊椎动物Numa相关蛋白相比如何以及为何参与这些功能。

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