Synowiec Ewelina, Ksiazek Dominika, Błasiak Janusz, Woźniak Katarzyna
Department of Molecular Genetics, University of Lodz, 12/16 Banacha St., 90-237 Lodz, Poland.
Postepy Biochem. 2008;54(3):234-41.
SUMO modification (SUMOylation) is a postranslational modification playing an important role in chromatin structure, DNA metabolism, transcriptional regulation and genomic stability. Molecular mechanisms underlying such effects of SUMO-modified proteins are largely obscure, but the influence of SUMOylation on genomic stability seems to be of particular importance since its disturbances may lead to serious pathological states, including cancer. Cell cycle control and DNA repair proteins essential for preserving genomic stability and SUMO modification may change their localization and function. We have relatively much information on some subnuclear components, like nucleous, while little is known on some others, like PML bodies, but the results of some recent research suggest, that this is SUMOylation, which plays a key role in their architecture and functioning. The influence of SUMO modifications on genomic stability and chromatin structure may be fundamental for cell's viability, therefore the mechanisms of SUMOylation are worth studying.
小泛素样修饰(SUMOylation)是一种翻译后修饰,在染色质结构、DNA代谢、转录调控和基因组稳定性方面发挥着重要作用。SUMO修饰蛋白产生这些效应的分子机制在很大程度上尚不明确,但SUMOylation对基因组稳定性的影响似乎尤为重要,因为其紊乱可能导致包括癌症在内的严重病理状态。对于维持基因组稳定性至关重要的细胞周期调控和DNA修复蛋白以及SUMO修饰可能会改变它们的定位和功能。我们对一些亚核成分(如细胞核)有相对较多的了解,而对其他一些成分(如早幼粒细胞白血病蛋白小体)了解甚少,但最近的一些研究结果表明,正是SUMOylation在它们的结构和功能中起关键作用。SUMO修饰对基因组稳定性和染色质结构的影响可能对细胞活力至关重要,因此SUMOylation的机制值得研究。