Developmental Skin Biology Section, NIAMS/NIH, Bethesda, Maryland 20892, USA.
J Cell Biochem. 2011 Feb;112(2):445-52. doi: 10.1002/jcb.22891.
Small ubiquitin-like modifiers (SUMO) are post-translational modifiers that regulate target protein activity in diverse ways. The most common group of SUMO substrates is transcription factors, whose transcriptional activity can be altered positively or negatively as a result of SUMOylation. DLX3 is a homeodomain transcription factor involved in placental development, in the differentiation of structures involving epithelial-mesenchymal interactions, such as hair, teeth and nails, and in bone mineralization. We identified two potential SUMOylation sites in the N-terminal domain of DLX3 at positions K83 and K112. Among the six members of the Distal-less family, DLX3 is the only member containing these sites, which are highly conserved among vertebrates. Co-expression experiments demonstrated that DLX3 can be SUMOylated by SUMO1. Site-directed mutagenesis of lysines 83 and 112 to arginines (K83R and K112R) demonstrated that only K112 is involved in SUMOylation. Immunocytochemical analysis determined that SUMOylation does not affect DLX3 translocation to the nucleus and favors perinuclear localization. Moreover, using electrophoresis mobility shift assay (EMSA), we found that DLX3 is still able to bind DNA when SUMOylated. Using luciferase reporter assays, we showed that DLX3(K112R) exhibits a significantly lower transcriptional activity compared to DLX3(WT), suggesting that SUMOylation has a positive effect on DLX3 activity. We identified a new level of regulation in the activity of DLX3 that may play a crucial role in the regulation of hair, teeth, and bone development.
小泛素相关修饰物 (SUMO) 是一类翻译后修饰物,能够以多种方式调节靶蛋白的活性。SUMO 底物中最常见的一组是转录因子,其转录活性可以因 SUMO 化而正向或负向改变。DLX3 是一种同源域转录因子,参与胎盘发育、涉及上皮-间充质相互作用的结构(如毛发、牙齿和指甲)的分化以及骨矿化。我们在 DLX3 的 N 端结构域中鉴定出两个潜在的 SUMO 化位点,分别位于 K83 和 K112 位置。在六类 Distal-less 家族成员中,DLX3 是唯一含有这些位点的成员,这些位点在脊椎动物中高度保守。共表达实验表明,DLX3 可以被 SUMO1 进行 SUMO 化。赖氨酸 83 和 112 突变为精氨酸(K83R 和 K112R)的定点突变表明只有 K112 参与 SUMO 化。免疫细胞化学分析确定 SUMO 化不会影响 DLX3 向核内的易位,并有利于核周定位。此外,通过电泳迁移率变动分析(EMSA),我们发现 SUMO 化的 DLX3 仍然能够与 DNA 结合。通过荧光素酶报告基因检测,我们发现与野生型 DLX3(WT)相比,DLX3(K112R)的转录活性显著降低,表明 SUMO 化对 DLX3 活性具有正向影响。我们确定了 DLX3 活性的一种新的调节水平,这可能在毛发、牙齿和骨骼发育的调控中发挥关键作用。