Okazaki Toshihiko, Sakamuro Daitoku
Walther Cancer Institute, Purdue Cancer Center, West Lafayette, Indiana, USA.
J Cancer Res Clin Oncol. 2007 Sep;133(9):581-8. doi: 10.1007/s00432-007-0201-5. Epub 2007 May 16.
The Fas/CD95/APO-1 ligand (FasL) is a death cytokine that binds to cell surface Fas/CD95/APO-1 receptor, yet a possible role of FasL expression in p53-dependent apoptosis is not fully understood in many human malignancies, including renal carcinoma.
By Northern blot and Western blot analyses, we determined the effect of p53 on the FasL and Fas receptor expression. To do this, we employed an in vitro renal carcinoma model system that was previously established by stably co-transfecting a temperature-sensitive mutant allele of the p53 tumor suppressor (ts-p53) with either the c-Myc oncogene or adenovirus E1A oncogene in baby rat kidney (BRK) epithelial cells. The ts-p53 is activated only at a permissive temperature. The transactivation activity of p53 was assessed by luciferase reporter assays. The sub-G1 cell population in the cell cycle representing apoptotic cell death was measured by flow cytometric analysis.
We found that the level of endogenous FasL, but not Fas receptor, was increased at a permissive temperature with delayed kinetics when compared with p21WAF1 expression, but was coincident with p53-induced apoptosis, whereas an apoptosis-defective mutant p53, which lacks the PxxP region (P: Proline, x: any amino acid), failed to induce FasL expression and hence apoptosis. Notably, p53-induced apoptosis was completely blocked by overexpressing a dominant negative inhibitor of the FADD/Mort-1, a pro-apoptotic adaptor that lies immediately downstream of the FasL/Fas receptor.
These results suggest that the FasL is a critical downstream effector of p53-dependent apoptosis in a cultured BRK renal carcinoma model system.
Fas/CD95/APO-1配体(FasL)是一种死亡细胞因子,可与细胞表面的Fas/CD95/APO-1受体结合,但在包括肾癌在内的许多人类恶性肿瘤中,FasL表达在p53依赖性凋亡中的可能作用尚未完全明确。
通过Northern印迹和Western印迹分析,我们确定了p53对FasL和Fas受体表达的影响。为此,我们采用了一种体外肾癌模型系统,该系统先前通过将p53肿瘤抑制基因的温度敏感突变等位基因(ts-p53)与c-Myc癌基因或腺病毒E1A癌基因在新生大鼠肾(BRK)上皮细胞中稳定共转染而建立。ts-p53仅在允许温度下被激活。通过荧光素酶报告基因检测评估p53的反式激活活性。通过流式细胞术分析测量细胞周期中代表凋亡细胞死亡的亚G1细胞群体。
我们发现,与p21WAF1表达相比,内源性FasL水平在允许温度下升高,动力学延迟,但与p53诱导的凋亡同时发生,而缺乏PxxP区域(P:脯氨酸,x:任何氨基酸)的凋亡缺陷型突变p53未能诱导FasL表达,因此也未能诱导凋亡。值得注意的是,通过过表达FADD/Mort-1的显性负性抑制剂(FasL/Fas受体下游紧邻的一种促凋亡衔接蛋白),p53诱导的凋亡被完全阻断。
这些结果表明,在培养的BRK肾癌模型系统中,FasL是p53依赖性凋亡的关键下游效应分子。