Jin Ge, Klika Alison, Callahan Michelle, Faga Ben, Danzig Joel, Jiang Zhengfan, Li Xiaoxia, Stark George R, Harrington John, Sherf Bruce
Athersys, Inc., 3201 Carnegie Avenue, Cleveland, OH 44115, USA.
Proc Natl Acad Sci U S A. 2004 Feb 17;101(7):2028-33. doi: 10.1073/pnas.0307314101. Epub 2004 Feb 6.
The NF-kappaB pathway plays a critical role in regulating cellular processes such as immune responses, stress responses, apoptosis, proliferation and differentiation, whereas dysfunction of this pathway has been associated with numerous cancer and immune disorders. We have applied our Random Activation of Gene Expression technology to an NF-kappaB reporter cell line to facilitate the discovery of positive regulators of NF-kappaB activation. A small protein expression library, corresponding to approximately 0.1x genome coverage, was generated and screened for clones exhibiting constitutive activation of NF-kappaB. After isolation of cellular clones displaying the relevant phenotypes, we identified two known components of the NF-kappaB pathway and a hypothetical gene that we have designated the human ortholog of Xenopus TAK1-binding protein 3 (TAB3). Overexpression of human TAB3 was found to activate both NF-kappaB and AP-1 transcription factors. Furthermore, the activation of NF-kappaB by TAB3 was blocked by the NF-kappaB inhibitor, SN50, and by expression of dominant-negative forms of tumor necrosis factor alpha-associated factor 6 and transforming growth factor beta-activated kinase. Taken together, these data demonstrate that TAB3 transforming growth factor is a constituent of the NF-kappaB pathway functioning upstream of tumor necrosis factor alpha-associated factor 6/transforming growth factor beta-activated kinase. Interestingly, increased expression of TAB3 was found in some cancer tissues, and its overexpression in NIH 3T3 cells resulted in cellular transformation, thus establishing a causative link between elevated TAB3 expression, constitutive NF-kappaB activation, and oncogenesis.
核因子κB(NF-κB)信号通路在调节细胞过程中发挥关键作用,如免疫反应、应激反应、细胞凋亡、增殖和分化,而该信号通路功能失调与众多癌症和免疫紊乱相关。我们已将基因表达随机激活技术应用于NF-κB报告基因细胞系,以促进NF-κB激活的正向调节因子的发现。构建了一个覆盖约0.1倍基因组的小蛋白表达文库,并筛选出显示NF-κB组成型激活的克隆。在分离出表现出相关表型的细胞克隆后,我们鉴定出NF-κB信号通路的两个已知成分以及一个假定基因,我们将其命名为非洲爪蟾TAK1结合蛋白3(TAB3)的人类直系同源基因。发现人类TAB3的过表达可激活NF-κB和AP-1转录因子。此外,NF-κB抑制剂SN50以及肿瘤坏死因子α相关因子6和转化生长因子β激活激酶的显性负性形式的表达可阻断TAB3对NF-κB的激活。综上所述,这些数据表明,TAB3转化生长因子是NF-κB信号通路的一个组成部分,在肿瘤坏死因子α相关因子6/转化生长因子β激活激酶的上游发挥作用。有趣的是,在一些癌症组织中发现TAB3的表达增加,其在NIH 3T3细胞中的过表达导致细胞转化,从而在TAB3表达升高、组成型NF-κB激活与肿瘤发生之间建立了因果联系。