Iljin K, Dube A, Kontusaari S, Korhonen J, Lahtinen I, Oettgen P, Alitalo K
Molecular/Cancer Biology Laboratory, Haartman Institute and Department of Biomedicine, University of Helsinki, Helsinki, Finland.
FASEB J. 1999 Feb;13(2):377-86. doi: 10.1096/fasebj.13.2.377.
The Tie gene encodes an endothelial cell receptor tyrosine kinase necessary for normal vascular development. The Tie gene promoter targets expression of heterologous genes specifically to endothelial cells in transgenic mice. Here we have characterized the promoter sequences critical for endothelial cell-specific activity in cultured cells and transgenic mice. Progressive deletions and site-directed mutations of the promoter showed that the critical endothelial cell-specific elements are an octamer transcription factor binding site and several Ets binding sites located in two clusters within 300 bp upstream of the major transcription initiation site. Among members of the Ets transcription factor family tested, NERF-2 (a novel transcription factor related to the ets factor ELF-1), which is expressed in endothelial cells, and ETS2 showed the strongest transactivation of the Tie promoter; ETS1 gave lower levels of stimulation and the other Ets factors gave little or no transactivation. Furthermore, the Tie promoter directed the production of high amounts of human growth hormone into the circulation of transgenic mice. The secreted amounts correlated with transgene copy number, being relatively insensitive to the effects of the transgene integration site. These properties suggest that Tie promoter activity is controlled by endothelial cell Ets factors and that it has potential for use in vectors for endothelial cell-specific gene expression.
Tie基因编码正常血管发育所必需的一种内皮细胞受体酪氨酸激酶。Tie基因启动子可将异源基因的表达特异性靶向转基因小鼠的内皮细胞。在此,我们已鉴定出对培养细胞和转基因小鼠中内皮细胞特异性活性至关重要的启动子序列。启动子的逐步缺失和定点突变表明,关键的内皮细胞特异性元件是一个八聚体转录因子结合位点和几个位于主要转录起始位点上游300 bp内两个簇中的Ets结合位点。在所测试的Ets转录因子家族成员中,在内皮细胞中表达的NERF-2(一种与ets因子ELF-1相关的新型转录因子)和ETS2对Tie启动子的反式激活作用最强;ETS1的刺激水平较低,而其他Ets因子几乎没有或没有反式激活作用。此外,Tie启动子指导大量人类生长激素进入转基因小鼠的循环系统。分泌量与转基因拷贝数相关,对转基因整合位点的影响相对不敏感。这些特性表明,Tie启动子活性受内皮细胞Ets因子控制,并且它有潜力用于内皮细胞特异性基因表达载体。