Pan George, Ahn Eun-Young, Chen Yabing, Feng Gong, Reddy Vishnu, Jhala Nirag C, McDonald Jay M
Department of Pathology, University of Alabama at Birmingham, Birmingham, AL 35294, USA.
Int J Oncol. 2007 Oct;31(4):843-50.
We have previously characterized the role of Fas in tumorigenesis using two cholangiocarcinoma cell lines expressing high (Fas(H)) and low (Fas(L)) levels of Fas. Here we further characterize Fas ligand (FasL) expression and function in these two cell lines. The Fas(L) cells expressed a high level of FasL, whereas the Fas(H) cells expressed a low level of FasL showing reciprocal expression of Fas and FasL in tumor cells. FasL released from the Fas(L) cells is capable of inducing apoptosis of lymphocytes, which is blocked by neutralizing Fas antibody. To study the underlying mechanism for the reciprocal expression of Fas and FasL, we examined the activities of both the Fas and FasL promoters. The activity of the Fas promoter is suppressed and the activity of the FasL promoter is stimulated in the Fas(L) cells compared to the Fas(H) cells. The inverse activities of Fas and FasL promoter in tumor cells are regulated by NF-kappaB, which inhibits Fas expression and increases FasL expression through binding to their respective promoters. The inverse expression of Fas and FasL in tumor cells is partially reversed by an NF-kappaB inhibitor. In conclusion, human cholangiocarcinoma cells reciprocally co-express functional Fas and FasL, which are the result of the activities of the Fas and FasL promoters being regulated by NF-kappaB. These findings provide a potential unifying molecular mechanism for modulating tumorigenesis via Fas/FasL expression.
我们之前利用两种分别高表达(Fas(H))和低表达(Fas(L))Fas的胆管癌细胞系,阐述了Fas在肿瘤发生中的作用。在此,我们进一步阐述这两种细胞系中Fas配体(FasL)的表达及功能。Fas(L)细胞高表达FasL,而Fas(H)细胞低表达FasL,显示肿瘤细胞中Fas和FasL呈相互表达。Fas(L)细胞释放的FasL能够诱导淋巴细胞凋亡,而这种凋亡可被中和性Fas抗体阻断。为研究Fas和FasL相互表达的潜在机制,我们检测了Fas和FasL启动子的活性。与Fas(H)细胞相比,Fas(L)细胞中Fas启动子的活性受到抑制,而FasL启动子的活性受到刺激。肿瘤细胞中Fas和FasL启动子的相反活性受NF-κB调控,NF-κB通过与它们各自的启动子结合来抑制Fas表达并增加FasL表达。NF-κB抑制剂可部分逆转肿瘤细胞中Fas和FasL的相反表达。总之,人胆管癌细胞相互共表达功能性Fas和FasL,这是Fas和FasL启动子活性受NF-κB调控的结果。这些发现为通过Fas/FasL表达调节肿瘤发生提供了一种潜在的统一分子机制。