Mattot V, Vercamer C, Soncin F, Calmels T, Huguet C, Fafeur V, Vandenbunder B
CNRS EP560-Institut Pasteur de Lille, Institut de Biologie de Lille, France.
Oncogene. 2000 Feb 10;19(6):762-72. doi: 10.1038/sj.onc.1203248.
We previously reported that the Ets1 transcription factor is expressed in endothelial cells during angiogenesis both in normal and pathological development. We analyse here the effects of the stable expression of an Ets transdominant negative mutant (Ets1-DB), consisting in an Ets1 protein lacking its transactivation domain. A retrovirus containing the Ets1-DB sequence fused to an IRES-Neo sequence was designed and used to infect brain capillary (IBE) and aorta (MAE) mouse endothelial cell lines. Cells expressing this Ets1 mutant were examined for proliferation, migration and adhesion. Consistent changes were observed on cell morphology, with increased spreading and modifications in the organization of the cytoskeleton, and increased cell adhesion. We investigated the ability of endothelial cells to organise into capillary-like structures using three-dimensional gels. On Matrigel, all endothelial cell lines formed a cord-like network within 24 h, with an increased ability of Ets1-DB cells to spread on this substrate. In long term cultures, IBE cells expressing Ets1-DB showed a higher capacity to form branched structures; this effect was potentiated by FGF2. These results demonstrate a role of the Ets transcription factors in the regulation of the adhesive and morphogenetic properties of endothelial cells.
我们之前报道过,Ets1转录因子在正常和病理发育过程中的血管生成期间在内皮细胞中表达。我们在此分析Ets反式显性负性突变体(Ets1-DB)稳定表达的影响,该突变体由缺乏反式激活结构域的Ets1蛋白组成。设计了一种含有与IRES-Neo序列融合的Ets1-DB序列的逆转录病毒,并用于感染脑微血管(IBE)和主动脉(MAE)小鼠内皮细胞系。对表达这种Ets1突变体的细胞进行增殖、迁移和黏附检测。在细胞形态上观察到一致的变化,包括铺展增加和细胞骨架组织的改变,以及细胞黏附增加。我们使用三维凝胶研究了内皮细胞组织成毛细血管样结构的能力。在基质胶上,所有内皮细胞系在24小时内形成了索状网络,Ets1-DB细胞在该基质上的铺展能力增强。在长期培养中,表达Ets1-DB的IBE细胞形成分支结构的能力更高;FGF2可增强这种效应。这些结果证明了Ets转录因子在内皮细胞黏附性和形态发生特性调控中的作用。