The ablation of the matricellular protein EMILIN2 causes defective vascularization due to impaired EGFR-dependent IL-8 production affecting tumor growth.
Alice PaulittiEva AndreuzziDario BizzottoRosanna PellicaniGiulia TarticchioStefano MarastoniChiara PastrelloIgor JurisicaGiovanni LigrestiFrancesco BucciottiRoberto DolianaRoberta ColladelPaola BraghettaEvelina PolettoAlessia Di SilvestreGiorgio BressanAlfonso ColombattiPaolo BonaldoMaurizio MongiatPublished in: Oncogene (2018)
EMILIN2 is an extracellular matrix constituent playing an important role in angiogenesis; however, the underlying mechanism is unknown. Here we show that EMILIN2 promotes angiogenesis by directly binding epidermal growth factor receptor (EGFR), which enhances interleukin-8 (IL-8) production. In turn, IL-8 stimulates the proliferation and migration of vascular endothelial cells. Emilin2 null mice were generated and exhibited delayed retinal vascular development, which was rescued by the administration of the IL-8 murine ortholog MIP-2. Next, we assessed tumor growth and tumor-associated angiogenesis in these mice. Tumor cell growth in Emilin2 null mice was impaired as well as the expression of MIP-2. The vascular density of the tumors developed in Emilin2 null mice was prejudiced and vessels perfusion, as well as response to chemotherapy, decreased. Accordingly, human tumors expressing high levels of EMILIN2 were more responsive to chemotherapy. These results point at EMILIN2 as a key microenvironmental cue affecting vessel formation and unveil the possibility to develop new prognostic tools to predict chemotherapy efficacy.
Keyphrases
- endothelial cells
- epidermal growth factor receptor
- high fat diet induced
- extracellular matrix
- tyrosine kinase
- small cell lung cancer
- vascular endothelial growth factor
- advanced non small cell lung cancer
- locally advanced
- high glucose
- wild type
- squamous cell carcinoma
- magnetic resonance imaging
- binding protein
- optical coherence tomography
- computed tomography
- insulin resistance
- type diabetes
- metabolic syndrome
- diabetic retinopathy
- protein protein
- transcription factor
- small molecule
- optic nerve
- chemotherapy induced