CRBM, CNRS UMR5237, Université de Montpellier, 1919 route de Mende, 34090 Montpellier, France.
Cells. 2019 Jul 31;8(8):801. doi: 10.3390/cells8080801.
The ubiquitin-like protein SUMO is a regulator involved in most cellular mechanisms. Recent studies have discovered new modes of function for this protein. Of particular interest is the ability of SUMO to organize proteins in larger assemblies, as well as the role of SUMO-dependent ubiquitylation in their disassembly. These mechanisms have been largely described in the context of DNA repair, transcriptional regulation, or signaling, while much less is known on how SUMO facilitates organization of microtubule-dependent processes during mitosis. Remarkably however, SUMO has been known for a long time to modify kinetochore proteins, while more recently, extensive proteomic screens have identified a large number of microtubule- and spindle-associated proteins that are SUMOylated. The aim of this review is to focus on the possible role of SUMOylation in organization of the spindle and kinetochore complexes. We summarize mitotic and microtubule/spindle-associated proteins that have been identified as SUMO conjugates and present examples regarding their regulation by SUMO. Moreover, we discuss the possible contribution of SUMOylation in organization of larger protein assemblies on the spindle, as well as the role of SUMO-targeted ubiquitylation in control of kinetochore assembly and function. Finally, we propose future directions regarding the study of SUMOylation in regulation of spindle organization and examine the potential of SUMO and SUMO-mediated degradation as target for antimitotic-based therapies.
类泛素蛋白 SUMO 是一种参与大多数细胞机制的调节蛋白。最近的研究发现了这种蛋白质的新功能模式。特别引人关注的是 SUMO 将蛋白质组织成更大的复合物的能力,以及 SUMO 依赖性泛素化在其解组装中的作用。这些机制在 DNA 修复、转录调控或信号转导的背景下得到了广泛描述,而关于 SUMO 如何在有丝分裂过程中促进微管依赖性过程的组织方面的了解要少得多。然而,值得注意的是,SUMO 长期以来一直被认为可以修饰着丝粒蛋白,而最近,广泛的蛋白质组学筛选已经鉴定出大量与微管和纺锤体相关的 SUMO 化蛋白。本文的目的是集中讨论 SUMO 化在纺锤体和着丝粒复合物组织中的可能作用。我们总结了被鉴定为 SUMO 缀合物的有丝分裂和微管/纺锤体相关蛋白,并举例说明了它们受 SUMO 调节的情况。此外,我们讨论了 SUMO 化在纺锤体上更大蛋白质复合物组织中的可能贡献,以及 SUMO 靶向泛素化在控制着丝粒组装和功能中的作用。最后,我们提出了关于 SUMO 化在调控纺锤体组织中的研究的未来方向,并探讨了 SUMO 和 SUMO 介导的降解作为抗有丝分裂治疗靶点的潜力。