Sustained expression of early growth response protein-1 blocks angiogenesis and tumor growth

被引:56
作者
Lucerna, Markus
Pomyje, Jiri
Mechtcheriakova, Diana
Kadl, Alexandra
Gruber, Florian
Bilban, Martin
Sobanov, Yuri
Schabbauer, Gernot
Breuss, Johannes
Wagner, Oswald
Bischoff, Markus
Clauss, Matthias
Binder, Bernd R.
Hofer, Erhard
机构
[1] Med Univ Vienna, Vienna Competence Ctr, Ctr Biomol Med & Pharmacol, Dept Vasc Biol & Thrombosis Res, A-1235 Vienna, Austria
[2] Med Univ Vienna, Dept Dermatol, A-1235 Vienna, Austria
[3] Med Univ Vienna, Clin Dept Med & Chem Lab Diagnost, A-1235 Vienna, Austria
[4] Med Univ Vienna, Ludwig Boltzmann Inst Clin & Expt Oncol, A-1235 Vienna, Austria
[5] Indiana Ctr Vasc Biol & Med, Dept Cellular & Integrat Physiol, Indianapolis, IN USA
基金
奥地利科学基金会;
关键词
D O I
10.1158/0008-5472.CAN-05-2732
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Transient induction of the transcription factor early growth response protein-1 (EGR-1) plays a pivotal role in the transcriptional response of endothelial cells to the angiogenic growth factors vascular endothelial growth factor (VEGF) and basic fibroblast growth factor (bFGF), which are produced by most tumors and are involved in the angiogenic switch. We report here that sustained expression of EGR-1 by recombinant adenoviruses in endothelial cells, however, leads to the specific induction of potent feedback inhibitory mechanisms, including strong up-regulation of transcriptional repressors, negative cell cycle check point effectors, proteins with established antiangiogenic activity, and several proapoptotic genes. Sustained EGR-1 expression consistently leads to an antiangiogenic state characterized by an altered responsiveness to VEGF and bFGF and a striking inhibition of sprouting and tubule formation in vitro. Furthermore, EGR-1-expressing viruses potently inhibit cell invasion and vessel formation in the murine Matrigel model and repress tumor growth in a murine fibrosarcoma model. We propose that gene therapy involving sustained EGR-1 expression may constitute a novel therapeutic principle in the treatment of cancer due to the simultaneous induction of multiple pathways of antiangiogenesis, growth arrest, and apoptosis induction in proliferating cells leading to preferential inhibition of angiogenesis and tumor growth.
引用
收藏
页码:6708 / 6713
页数:6
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