Lee Hae-Young, Youn Seock-Won, Kim Ju-Young, Park Kyung-Woo, Hwang Chang-Il, Park Woong-Yang, Oh Byung-Hee, Park Young-Bae, Walsh Kenneth, Seo Jeong-Sun, Kim Hyo-Soo
Innovative Research Institute for Cell Therapy, Seoul National University Hospital, Seoul, Korea.
Arterioscler Thromb Vasc Biol. 2008 Jan;28(1):112-20. doi: 10.1161/ATVBAHA.107.153304. Epub 2007 Nov 21.
We evaluated the full range effects of FOXO3a in endothelial cells (ECs) by microarray analysis and investigated the role of FOXO3a regulating TNF receptor signaling pathway.
Human umbilical vein endothelial cells (HUVECs) were transfected with adenoviral vectors expressing constitutively active FOXO3a (Ad-TM-FOXO3a). Ad-TM-FOXO3a transfection caused remarkable apoptosis, which were accompanied with upregulation of genes related with TNF receptor signaling, such as TNF-alpha, TANK (TRAF-associated NF-kappaB activator), and TTRAP (TRAF and TNF receptor-associated protein). Furthermore, kappaB-Ras1 (IkappaB-interacting Ras-like protein-1) which is known to block IkappaB degradation was found increased, and intranuclear translocation of NF-kappaB was inhibited. GADD45beta and XIAP, negative regulators of c-Jun N-terminal kinase (JNK), were suppressed and JNK activity was increased. Attenuation of TNF signaling pathway either by blocking antibody for TNF receptor or by blocking JNK with DMAP (6-dimethylaminopurine) or Ad-TAM67 (dominant negative c-Jun) cotransfection, significantly reduced FOXO3a-induced apoptosis. Finally, treatment of vasculature with heat shock, an activator of endogenous FOXO3a, resulted in EC apoptosis, which was completely rescued by Ad-TAM67.
FOXO3a promotes apoptosis of ECs, through activation of JNK and suppression of NF-kappaB. These data identify a novel role of FOXO3a to turn TNF receptor signaling to a proapoptotic JNK-dependent pathway.
通过微阵列分析评估FOXO3a在内皮细胞(ECs)中的全面作用,并研究FOXO3a调节肿瘤坏死因子(TNF)受体信号通路的作用。
用表达组成型活性FOXO3a的腺病毒载体(Ad-TM-FOXO3a)转染人脐静脉内皮细胞(HUVECs)。Ad-TM-FOXO3a转染导致显著的细胞凋亡,同时伴有TNF受体信号相关基因的上调,如TNF-α、TANK(TRAF相关的NF-κB激活剂)和TTRAP(TRAF和TNF受体相关蛋白)。此外,发现已知可阻断IκB降解的κB-Ras1(IκB相互作用的Ras样蛋白-1)增加,并且NF-κB的核转位受到抑制。c-Jun氨基末端激酶(JNK)的负调节因子GADD45β和XIAP受到抑制,JNK活性增加。通过TNF受体阻断抗体或用DMAP(6-二甲基氨基嘌呤)阻断JNK或Ad-TAM67(显性负性c-Jun)共转染减弱TNF信号通路,可显著降低FOXO3a诱导的细胞凋亡。最后,用热休克(一种内源性FOXO3a激活剂)处理脉管系统导致EC凋亡,而Ad-TAM67可完全挽救这种凋亡。
FOXO3a通过激活JNK和抑制NF-κB促进EC凋亡。这些数据确定了FOXO3a的一种新作用,即将TNF受体信号转化为促凋亡的JNK依赖性途径。