Lössner Daniela, Abou-Ajram Claudia, Benge Anke, Aumercier Marc, Schmitt Manfred, Reuning Ute
Clinical Research Unit, Frauenklinik der Technischen Universität München, Munich, Germany.
J Cell Physiol. 2009 Aug;220(2):367-75. doi: 10.1002/jcp.21774.
We previously showed that integrin alphavbeta3 overexpression and engagement by its ligand vitronectin increased adhesion, motility, and proliferation of human ovarian cancer cells. In search of differentially regulated genes involved in these tumor biological events, we previously identified the integrin-linked kinase (ILK) to be under control of alphavbeta3. In the present investigation we demonstrated significantly upregulated ILK protein as a function of alphavbeta3 in two ovarian cancer cell lines, OV-MZ-6 and OVCAR-3, and proved co-localization at the surface of alphavbeta3-overexpressing cells adherent to vitronectin. Increase of ILK protein was reflected by enhanced ILK promoter activity, an effect, which we further characterized with regard to transcriptional response elements involved. Abrogation of NF-kappaB/c-rel or p53 binding augmented ILK promoter activity and preserved induction by alphavbeta3. The AP1-mutant exhibited decreased promoter activity but was also still inducible by alphavbeta3. Disruption of the two DNA consensus motifs for Ets proteins led to divergent observations: mutation of the Ets motif at promoter position -462 bp did not significantly alter promoter activity but still allowed response to alphavbeta3. In contrast, disruption of the second Ets motif at position -85 bp did not only lead to slightly diminished promoter activity but also, in that case, abrogated ILK promoter induction by alphavbeta3. Subsequent co-transfection studies with ets-1 in the presence of the second Ets motif led to additional induction of ILK promoter activity. Taken together, these data suggest that ets-1 binding to the second Ets DNA motif strongly contributes to alphavbeta3-mediated ILK upregulation. By increasing ILK as an important integrin-proximal kinase, alphavbeta3 may promote its intracellular signaling and tumor biological processes arising thereof in favor of ovarian cancer metastasis.
我们先前的研究表明,整合素αvβ3的过表达及其与配体玻连蛋白的结合可增加人卵巢癌细胞的黏附、迁移和增殖。为了寻找参与这些肿瘤生物学事件的差异调节基因,我们先前确定整合素连接激酶(ILK)受αvβ3的调控。在本研究中,我们证明在两种卵巢癌细胞系OV-MZ-6和OVCAR-3中,ILK蛋白作为αvβ3的函数显著上调,并证明在黏附于玻连蛋白的αvβ3过表达细胞表面共定位。ILK蛋白的增加反映在ILK启动子活性增强上,我们进一步对涉及的转录反应元件进行了表征。NF-κB/c-rel或p53结合的消除增强了ILK启动子活性,并保留了αvβ3的诱导作用。AP1突变体的启动子活性降低,但仍可被αvβ3诱导。Ets蛋白的两个DNA共有基序的破坏导致了不同的观察结果:启动子位置-462 bp处的Ets基序突变并未显著改变启动子活性,但仍允许对αvβ3作出反应。相反,位置-85 bp处的第二个Ets基序的破坏不仅导致启动子活性略有降低,而且在这种情况下,消除了αvβ3对ILK启动子的诱导作用。随后在第二个Ets基序存在的情况下与ets-1进行的共转染研究导致ILK启动子活性的额外诱导。综上所述,这些数据表明ets-1与第二个Ets DNA基序的结合强烈促进了αvβ3介导的ILK上调。通过增加作为重要整合素近端激酶的ILK,αvβ3可能促进其细胞内信号传导以及由此产生的有利于卵巢癌转移的肿瘤生物学过程。