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SUMO 通路在有丝分裂中的新兴作用。

Emerging roles of the SUMO pathway in mitosis.

机构信息

Laboratory of Gene Regulation and Development, NICHD/NIH, Building 18, Room 106, MSC-5431, Bethesda, MD 20892, USA.

出版信息

Cell Div. 2008 Jan 24;3:5. doi: 10.1186/1747-1028-3-5.

Abstract

SUMO proteins are small ubiquitin-like modifiers found in all eukaryotes that become covalently conjugated to other cellular proteins. The SUMO conjugation pathway is biochemically similar to ubiquitin conjugation, although the enzymes within the pathway act exclusively on SUMO proteins. This post-translational modification controls many processes. Here, I will focus on evidence that SUMOylation plays a critical role(s) in mitosis: Early studies showed a genetic requirement for SUMO pathway components in the process of cell division, while later findings implicated SUMOylation in the control of mitotic chromosome structure, cell cycle progression, kinetochore function and cytokinesis. Recent insights into the targets of SUMOylation are likely to be extremely helpful in understanding each of these aspects. Finally, growing evidence suggests that SUMOylation is a downstream target of regulation through Ran, a small GTPase with important functions in both interphase nuclear trafficking and mitotic spindle assembly.

摘要

SUMO 蛋白是存在于所有真核生物中的小泛素样修饰蛋白,可共价连接到其他细胞蛋白上。SUMO 连接途径在生化上与泛素连接途径相似,尽管该途径中的酶仅作用于 SUMO 蛋白。这种翻译后修饰控制着许多过程。在这里,我将重点介绍 SUMO 化在有丝分裂中发挥关键作用的证据:早期研究表明 SUMO 途径成分在细胞分裂过程中的遗传需求,而后来的研究表明 SUMO 化在控制有丝分裂染色体结构、细胞周期进程、动粒功能和胞质分裂中起作用。对 SUMO 化靶标的最新认识可能对理解这些方面都非常有帮助。最后,越来越多的证据表明 SUMO 化是通过 Ran 调节的下游靶标,Ran 是一种在核内运输和有丝分裂纺锤体组装中具有重要功能的小分子 GTPase。

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