Journal article
Authors list: Depner, C.; zum Buttel, H.; Boeguercue, N.; Cuesta, A. M.; Aburto, M. R.; Seidel, S.; Finkelmeier, F.; Foss, F.; Hofmann, J.; Kaulich, K.; Barbus, S.; Segarra, M.; Reifenberger, G.; Garvalov, B. K.; Acker, T.; Acker-Palmer, A.
Publication year: 2016
Journal: Nature Communications
Volume number: 7
eISSN: 2041-1723
Open access status: Gold
DOI Link: https://doi.org/10.1038/ncomms12329
Publisher: Nature Research
Abstract:
Diffuse invasion of the surrounding brain parenchyma is a major obstacle in the treatment of gliomas with various therapeutics, including anti-angiogenic agents. Here we identify the epi-/genetic and microenvironmental downregulation of ephrinB2 as a crucial step that promotes tumour invasion by abrogation of repulsive signals. We demonstrate that ephrinB2 is downregulated in human gliomas as a consequence of promoter hypermethylation and gene deletion. Consistently, genetic deletion of ephrinB2 in a murine high-grade glioma model increases invasion. Importantly, ephrinB2 gene silencing is complemented by a hypoxia-induced transcriptional repression. Mechanistically, hypoxia-inducible factor (HIF)-1 alpha induces the EMT repressor ZEB2, which directly downregulates ephrinB2 through promoter binding to enhance tumour invasiveness. This mechanism is activated following anti-angiogenic treatment of gliomas and is efficiently blocked by disrupting ZEB2 activity. Taken together, our results identify ZEB2 as an attractive therapeutic target to inhibit tumour invasion and counteract tumour resistance mechanisms induced by anti-angiogenic treatment strategies.
Citation Styles
Harvard Citation style: Depner, C., zum Buttel, H., Boeguercue, N., Cuesta, A., Aburto, M., Seidel, S., et al. (2016) EphrinB2 repression through ZEB2 mediates tumour invasion and anti-angiogenic resistance, Nature Communications, 7, Article 12329. https://doi.org/10.1038/ncomms12329
APA Citation style: Depner, C., zum Buttel, H., Boeguercue, N., Cuesta, A., Aburto, M., Seidel, S., Finkelmeier, F., Foss, F., Hofmann, J., Kaulich, K., Barbus, S., Segarra, M., Reifenberger, G., Garvalov, B., Acker, T., & Acker-Palmer, A. (2016). EphrinB2 repression through ZEB2 mediates tumour invasion and anti-angiogenic resistance. Nature Communications. 7, Article 12329. https://doi.org/10.1038/ncomms12329
Keywords
BEVACIZUMAB; cell invasion; MICROARRAY ANALYSIS