Nambiar Sandeep, Mirmohammadsadegh Alireza, Hassan Mohamed, Hegemann Johannes H, Hengge Ulrich R
Department of Dermatology, Heinrich-Heine-University, Duesseldorf, Germany.
Exp Dermatol. 2008 Dec;17(12):986-91. doi: 10.1111/j.1600-0625.2008.00730.x. Epub 2008 May 21.
Melanoma is a complex genetic disease, the management of which will require an in-depth understanding of the biology underlying its initiation and progression. Recently, we have reported the differential regulation of a novel gene, namely ASK/Dbf4, in melanoma and suggested upregulation of ASK/Dbf4 as a novel molecular determinant with prognostic relevance that confers a proliferative advantage in cutaneous melanoma. As trans-acting factor binding is fundamental to understand the regulation of gene expression, this study focuses on characterization of the specific transcriptional regulation of ASK/Dbf4 in melanoma.
We investigated whether ASK/Dbf4 is a transcriptional target of the important cell cycle regulator E2F1 in melanoma.
As evidenced by gel supershift assays on nuclear extracts from various melanoma cell lines (SK-MEL-28, MV3, M13, A375 and BLM), E2F1 bound to the ASK/Dbf4 minimal promoter (MP). In addition, cisplatin-mediated abrogation of E2F1 binding to the ASK/Dbf4 MP resulted in a transcriptional decrease in ASK/Dbf4. Further, the current study also demonstrated that ASK/Dbf4 regulation was refractory to UVB, a well-known risk factor for melanoma.
In summary, our study not only elucidated that ASK/Dbf4, a novel cell survival gene in melanoma was transcriptionally regulated by E2F1, but also that the induction of ASK/Dbf4 was refractory to UVB exposure suggesting that its upregulation was not an early event in melanomagenesis.
黑色素瘤是一种复杂的遗传性疾病,其治疗需要深入了解其发生和发展的生物学基础。最近,我们报道了一种新基因ASK/Dbf4在黑色素瘤中的差异调节,并提出ASK/Dbf4的上调作为一种具有预后相关性的新分子决定因素,赋予皮肤黑色素瘤增殖优势。由于反式作用因子结合对于理解基因表达调控至关重要,本研究聚焦于黑色素瘤中ASK/Dbf4特异性转录调控的表征。
我们研究了ASK/Dbf4是否是黑色素瘤中重要细胞周期调节因子E2F1的转录靶点。
通过对各种黑色素瘤细胞系(SK-MEL-28、MV3、M13、A375和BLM)核提取物进行凝胶超迁移分析证明,E2F1与ASK/Dbf4最小启动子(MP)结合。此外,顺铂介导的E2F1与ASK/Dbf4 MP结合的消除导致ASK/Dbf4转录减少。此外,本研究还表明,ASK/Dbf4的调节对紫外线B(UVB)不敏感,紫外线B是黑色素瘤的一个众所周知的危险因素。
总之,我们的研究不仅阐明了黑色素瘤中的一种新的细胞存活基因ASK/Dbf4受E2F1转录调控,而且还表明ASK/Dbf4的诱导对UVB暴露不敏感,提示其上调不是黑色素瘤发生的早期事件。