We have focused on 4 related areas. 1) Our previous studies have identified a critical role of Delta4 (Dll4), an endothelial-specific membrane-bound ligand for Notch1 and Notch4, as a regulator of endothelial cell function. Dll4 is selectively expressed in the developing endothelium and is required for normal vascular development. Post-natally, Dll4 is expressed in the angiogenic endothelium, particularly in the tumor vasculature. We have found that Dll4 is a negative regulator of angiogenesis, as it functions as a selective inhibitor of VEGF-A by down-regulating the principal VEGF-A signaling receptor, VEGFR-2 and co-receptor Npn-1. In pre-clinical cancer models, we have documented that Dll4 can markedly reduce tumor angiogenesis and the growth of tumors of lymphoid origin by reducing VEGF-A responses in the tumor vascular endothelium. In related experiments, we have begun to explore the role of the Notch ligand JAG2 in angiogenesis. To this end, we have developed a new mouse model of JAG2-deficiency and explored the potential contribution of Notch-dependent and Notch-independent pathways in endothelial cell function and angiogenesis. Preliminary results provide strong evidence for a role of Jag2 in the maintenance of the endothelial intestinal stem cell niche. 2) We have continued investigations on how ephrinB ligands and their EphB receptors orchestrate endothelial/endothelial/pericyte assembly in the vasculature. EphrinB ligands are surface-bound; thus receptor-ligand interactions in the B-type Eph/Ephrin interactions involve adjacent cells. In addition to activating their cognate EphB receptors, B Ephrins can function as signaling molecules when engaged by the receptor through reverse signaling. Eph receptors are tyrosine kinases interacting with their membrane-anchored ephrin ligands. We have now investigated the potential role of Eph/ephrin signaling in the regulation of endothelial cells survival. We have found that silencing EphrinB expression or expression of a tyrosine-phosphorylation-deficient mutant EphrinB (contains substitutions of all tyrosine residues that prevent tail phosphorylation and acts as a dominant-negative inhibitor of endogenous WT ephrin) causes endothelial cell death. This outcome cannot be prevented by the addition of exogenous VEGFA or FGF2. Biochemical and genetic experiments have revealed that such death is mediated by JNK3/MAPK10, and that EphrinB2 tyrosine phosphorylation-dependent signaling serves as a modulator of MAPK10/JNK3 expression. Thus, the silencing of JNK3 prevents cell death in endothelial cells that are EphrinB signaling-deficient. Consistent with these results, the hyaloid vasculature in mice genetically-deficient of EphrinB2 undergoes increased cell death in association with JNK3 activation, and JNK3-deficient mice display ocular vascular defects that mirror those of EphrinB2 signaling deficiency. These results provide evidence supporting a role for EphrinB signaling as an endothelial pro-survival pathway and a therapeutic target for inhibition of angiogenesis. based on this evidence, we are currently exploring the possibility of targeting EphrinB2 signaling in the tumor vasculature in hoped to inducing its regression thereby promoting tumor cell starvation of collapse. 3) In earlier observations we have linked the loss of the tumor-suppressor protein DLC1 with increased survival in primary endothelial cells under conditions of stress. We now discovered that DLC1 is a critical regulator of cell contact inhibition of proliferation in primary human endothelial cells, promoting cell death when the cells reach high density. DLC1 depletion confers a pro-survival phenotype to confluent, but not sparse endothelial cells, attributable to increased NF-kB activation associated with increased tumor necrosis factor alpha-induced protein 3 (TNFAIP3/A20) signaling. Consistent with a role of DLC1 depletion in endothelial cell tumorigenesis, we found that DLC1 is abnormally low and TNFAIP3/A20 is abnormally high in human angiosarcoma. Experimental treatment with the NF-kB inhibitor Tanespimycin/17-AAG significantly reduced angiosarcoma tumor growth in mouse. These results identify DLC1 as a previously unrecognized regulator of endothelial cell contact inhibition of proliferation that is depleted in angiosarcoma, and provide evidence supporting the targeting of NF-kB for the treatment of angiosarcoma where DLC1 is lost.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Investigator-Initiated Intramural Research Projects (ZIA)
Project #
1ZIASC010355-18
Application #
9556783
Study Section
Project Start
Project End
Budget Start
Budget End
Support Year
18
Fiscal Year
2017
Total Cost
Indirect Cost
Name
Clinical Sciences
Department
Type
DUNS #
City
State
Country
Zip Code
Sánchez-Martín, David; Otsuka, Atsushi; Kabashima, Kenji et al. (2018) Effects of DLC1 Deficiency on Endothelial Cell Contact Growth Inhibition and Angiosarcoma Progression. J Natl Cancer Inst 110:390-399
Ohnuki, Hidetaka; Tosato, Giovanna (2017) Characterization of Semaphorin 6A-Mediated Effects on Angiogenesis Through Regulation of VEGF Signaling. Methods Mol Biol 1493:345-361
Espígol-Frigolé, Georgina; Planas-Rigol, Ester; Ohnuki, Hidetaka et al. (2016) Identification of IL-23p19 as an endothelial proinflammatory peptide that promotes gp130-STAT3 signaling. Sci Signal 9:ra28
Chen, Inn-Inn; Caprioli, Arianna; Ohnuki, Hidetaka et al. (2016) EphrinB2 regulates the emergence of a hemogenic endothelium from the aorta. Sci Rep 6:27195
Salvucci, Ombretta; Ohnuki, Hidetaka; Maric, Dragan et al. (2015) EphrinB2 controls vessel pruning through STAT1-JNK3 signalling. Nat Commun 6:6576
Ohnuki, Hidetaka; Jiang, Kan; Wang, Dunrui et al. (2014) Tumor-infiltrating myeloid cells activate Dll4/Notch/TGF-? signaling to drive malignant progression. Cancer Res 74:2038-49
Ohnuki, Hidetaka; Tosato, Giovanna (2014) Notch and TGF?: Functional partners facilitating tumor progression. Oncoimmunology 3:e29029
Oksenhendler, Eric; Boutboul, David; Beldjord, Kheira et al. (2013) Human herpesvirus 8+ polyclonal IgM? B-cell lymphocytosis mimicking plasmablastic leukemia/lymphoma in HIV-infected patients. Eur J Haematol 91:497-503
Gasperini, Paola; Espigol-Frigole, Georgina; McCormick, Peter J et al. (2012) Kaposi sarcoma herpesvirus promotes endothelial-to-mesenchymal transition through Notch-dependent signaling. Cancer Res 72:1157-69
Segarra, Marta; Ohnuki, Hidetaka; Maric, Dragan et al. (2012) Semaphorin 6A regulates angiogenesis by modulating VEGF signaling. Blood 120:4104-15

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