Valin A, Gill G
Department of Anatomy and Cellular Biology, Tufts University School of Medicine, 136 Harrison Avenue, Boston, MA 02111, USA.
Biochem Soc Trans. 2007 Dec;35(Pt 6):1393-6. doi: 10.1042/BST0351393.
In eukaryotes, gene expression is controlled by a relatively small number of regulators. Post-translational modifications dramatically increase the functional possibilities of those regulators. Modification of many transcription factors and cofactors by SUMO (small ubiquitin-related modifier) correlates, in most cases, with inhibition of transcription. Recent studies suggest a model whereby SUMO conjugation to transcription factors promotes the recruitment of co-repressors through direct protein-protein interaction with the SUMO protein. HDACs (histone deacetylases) are important, but not exclusive, effectors of SUMO-mediated repression. Sp3 (specificity protein 3), a zinc-finger DNA-binding domain transcription factor, has the ability to both activate and repress transcription in a context-dependent manner. SUMOylation regulates the dual nature of Sp3 function. Current data suggest that Sp3 represses transcription in a SUMO-dependent manner but independent of HDACs. Recent studies to identify additional co-repressors associated with SUMO and further investigate regulated activity of Sp3 are providing a deeper understanding of SUMO-dependent mechanisms of transcriptional regulation.
在真核生物中,基因表达由相对少数的调节因子控制。翻译后修饰极大地增加了这些调节因子的功能可能性。在大多数情况下,小泛素相关修饰物(SUMO)对许多转录因子和辅因子的修饰与转录抑制相关。最近的研究提出了一种模型,即SUMO与转录因子的缀合通过与SUMO蛋白的直接蛋白质-蛋白质相互作用促进共抑制因子的募集。组蛋白脱乙酰酶(HDAC)是SUMO介导的抑制作用的重要但非唯一的效应器。特异性蛋白3(Sp3)是一种锌指DNA结合结构域转录因子,具有根据具体情况激活和抑制转录的能力。SUMO化调节Sp3功能的双重性质。目前的数据表明,Sp3以SUMO依赖但不依赖HDAC的方式抑制转录。最近为鉴定与SUMO相关的其他共抑制因子并进一步研究Sp3的调节活性所做的研究,正在让人们对SUMO依赖的转录调节机制有更深入的理解。