ElKeeb A M, Collier M E W, Maraveyas A, Ettelaie C
Dr. Camille Ettelaie, Biomedical Section, Department of Biological Sciences, University of Hull, Cottingham Road, Hull, HU6 7RX, UK, Tel: +44(0)1482-465528, Fax: +44(0)1482-465458, E-mail:
Thromb Haemost. 2015 Aug;114(2):364-78. doi: 10.1160/TH14-09-0795. Epub 2015 Apr 23.
We previously reported that high levels of tissue factor (TF) can induce cellular apoptosis in endothelial cells. In this study, TF-mediated mechanisms of induction of apoptosis were explored. Endothelial cells were transfected to express wild-type TF. Additionally, cells were transfected to express Asp253-substituted, or Ala253-substitued TF to enhance or prevent TF release, respectively. Alternatively, cells were pre-incubated with TF-rich and TF-poor microvesicles. Cell proliferation, apoptosis and the expression of cyclin D1, p53, bax and p21 were measured following activation of cells with PAR2-agonist peptide. Greatest levels of cell proliferation and cyclin D1 expression were observed in cells expressing wild-type or Asp253-substituted TF. In contrast, increased cellular apoptosis was observed in cells expressing Ala253-substituted TF, or cells pre-incubated with TF-rich microvesicles. The level of p53 protein, p53-phosphorylation at ser33, p53 nuclear localisation and transcriptional activity, but not p53 mRNA, were increased in cells expressing wild-type and Ala253-substituted TF, or in cells pre-incubated with TF-rich microvesicles. However, the expression of bax and p21 mRNA, and Bax protein were only increased in cells pre-incubated with TF-rich microvesicle and in cells expressing Ala253-substituted TF. Inhibition of the transcriptional activity of p53 using pifithrin-α suppressed the expression of Bax. Finally, siRNA-mediated suppression of p38α, or inhibition using SB202190 significantly reduced the p53 protein levels, p53 nuclear localisation and transcriptional activity, suppressed Bax expression and prevented cellular apoptosis. In conclusion, accumulation of TF within endothelial cells, or sequestered from the surrounding can induce cellular apoptosis through mechanisms mediated by p38, and involves the stabilisation of p53.
我们之前报道过高水平的组织因子(TF)可诱导内皮细胞发生细胞凋亡。在本研究中,对TF介导的凋亡诱导机制进行了探索。将内皮细胞转染以表达野生型TF。此外,分别将细胞转染以表达Asp253取代型或Ala253取代型TF,以增强或阻止TF释放。或者,将细胞与富含TF和缺乏TF的微泡进行预孵育。在用PAR2激动剂肽激活细胞后,检测细胞增殖、凋亡以及细胞周期蛋白D1、p53、bax和p21的表达。在表达野生型或Asp253取代型TF的细胞中观察到最高水平的细胞增殖和细胞周期蛋白D1表达。相反,在表达Ala253取代型TF的细胞或与富含TF的微泡预孵育的细胞中观察到细胞凋亡增加。在表达野生型和Ala253取代型TF的细胞中,或在与富含TF的微泡预孵育的细胞中,p53蛋白水平、p53在ser33处的磷酸化、p53核定位和转录活性增加,但p53 mRNA未增加。然而,bax和p21 mRNA以及Bax蛋白的表达仅在与富含TF的微泡预孵育的细胞和表达Ala253取代型TF的细胞中增加。使用pifithrin-α抑制p53的转录活性可抑制Bax的表达。最后,siRNA介导的p38α抑制或使用SB202190的抑制显著降低了p53蛋白水平、p53核定位和转录活性,抑制了Bax表达并阻止了细胞凋亡。总之,TF在内皮细胞内的积累或从周围环境中隔离可通过p38介导的机制诱导细胞凋亡,并涉及p53的稳定。