<div><p>The secreted semaphorin Sema3E controls cell migration and invasiveness in cancer cells. Sema3E-receptor, PlexinD1, is frequently upregulated in melanoma, breast, colon, ovarian and prostate cancers; however, the mechanisms underlying PlexinD1 upregulation and the downstream events elicited in tumor cells are still unclear. Here we show that the canonical RBPjk-dependent Notch signaling cascade controls PlexinD1 expression in primary endothelial and cancer cells. Transcriptional activation was studied by quantitative PCR and promoter activity reporter assays. We found that Notch ligands and constitutively activated intracellular forms of Notch receptors upregulated PlexinD1 expression; conversely RNAi-based knock-down, or pharmacolo...
Notch signalling is implicated in the pathogenesis of a variety of cancers, but its role in prostate...
Sema3E, a ligand for PlexinD1, controls angiogenesis and promotes cancer invasion and metastasis. In...
Cancer cells often employ developmental cues for advantageous growth and metastasis. Here, we report...
<p>(A, B) HEK-293T cells were transiently transfected with a constitutively activated Notch-intracel...
Semaphorin 3E (Sema3E) is a secreted molecule implicated in axonal path finding and inhibition of de...
SummaryThe semaphorin guidance molecules and their receptors, the plexins, are often inappropriately...
Abstract Growth factor receptor tyrosine kinase (RTK) pathway activation is a key mechanism for medi...
Semaphorins and their receptors plexins have diverse roles in many cancers affecting tumour growth, ...
Metastatic castration-resistant prostate cancer (CRPC) is the primary cause of prostate cancer-speci...
Plexin D1 (PLXND1) is broadly expressed on tumor vessels and tumor cells in a number of different hu...
Semaphorins are mainly known as guidance signals in development, acting through receptors called Ple...
Sema3E, a ligand for PlexinD1, controls angiogenesis and promotes cancer invasion and metastasis. In...
<p>(A) Wound healing assay in PC3 cells treated with gamma secretase inhibitors—DAPT and RO4929097 (...
During early embryogenesis, vasculature development is essential for the survival of the organism. S...
Semaphorins are mainly known as guidance signals in development, acting through receptors called Ple...
Notch signalling is implicated in the pathogenesis of a variety of cancers, but its role in prostate...
Sema3E, a ligand for PlexinD1, controls angiogenesis and promotes cancer invasion and metastasis. In...
Cancer cells often employ developmental cues for advantageous growth and metastasis. Here, we report...
<p>(A, B) HEK-293T cells were transiently transfected with a constitutively activated Notch-intracel...
Semaphorin 3E (Sema3E) is a secreted molecule implicated in axonal path finding and inhibition of de...
SummaryThe semaphorin guidance molecules and their receptors, the plexins, are often inappropriately...
Abstract Growth factor receptor tyrosine kinase (RTK) pathway activation is a key mechanism for medi...
Semaphorins and their receptors plexins have diverse roles in many cancers affecting tumour growth, ...
Metastatic castration-resistant prostate cancer (CRPC) is the primary cause of prostate cancer-speci...
Plexin D1 (PLXND1) is broadly expressed on tumor vessels and tumor cells in a number of different hu...
Semaphorins are mainly known as guidance signals in development, acting through receptors called Ple...
Sema3E, a ligand for PlexinD1, controls angiogenesis and promotes cancer invasion and metastasis. In...
<p>(A) Wound healing assay in PC3 cells treated with gamma secretase inhibitors—DAPT and RO4929097 (...
During early embryogenesis, vasculature development is essential for the survival of the organism. S...
Semaphorins are mainly known as guidance signals in development, acting through receptors called Ple...
Notch signalling is implicated in the pathogenesis of a variety of cancers, but its role in prostate...
Sema3E, a ligand for PlexinD1, controls angiogenesis and promotes cancer invasion and metastasis. In...
Cancer cells often employ developmental cues for advantageous growth and metastasis. Here, we report...