Plexin-B1 activates NF-κB and IL-8 to promote a pro-angiogenic response in endothelial cells.

PLoS One

Department of Oncology and Diagnostic Sciences, University of Maryland Dental School, Baltimore, Maryland, United States of America.

Published: February 2012

AI Article Synopsis

  • Sema4D interacts with its receptor Plexin-B1 in endothelial cells, promoting angiogenesis through RhoA and Akt pathways while activating NF-κB.
  • The activation of NF-κB leads to key cellular responses such as migration, capillary tube formation, and protection against apoptosis, although it does not influence cell proliferation.
  • The study concludes that the Sema4D/Plexin-B1 pathway is vital for IL-8 production and angiogenesis in tumor environments, highlighting its potential significance in cancer biology.

Article Abstract

Background: The semaphorins and their receptors, the plexins, are proteins related to c-Met and the scatter factors that have been implicated in an expanding signal transduction network involving co-receptors, RhoA and Ras activation and deactivation, and phosphorylation events. Our previous work has demonstrated that Semaphorin 4D (Sema4D) acts through its receptor, Plexin-B1, on endothelial cells to promote angiogenesis in a RhoA and Akt-dependent manner. Since NF-κB has been linked to promotion of angiogenesis and can be activated by Akt in some contexts, we wanted to examine NF-κB in Sema4D treated cells to determine if there was biological significance for the pro-angiogenic phenotype observed in endothelium.

Methods/principal Findings: Using RNA interference techniques, gel shifts and NF-κB reporter assays, we demonstrated NF-κB translocation to the nucleus in Sema4D treated endothelial cells occurring downstream of Plexin-B1. This response was necessary for endothelial cell migration and capillary tube formation and protected endothelial cells against apoptosis as well, but had no effect on cell proliferation. We dissected Plexin-B1 signaling with chimeric receptor constructs and discovered that the ability to activate NF-κB was dependent upon Plexin-B1 acting through Rho and Akt, but did not involve its role as a Ras inhibitor. Indeed, inhibition of Rho by C3 toxin and Akt by LY294002 blocked Sema4D-mediated endothelial cell migration and tubulogenesis. We also observed that Sema4D treatment of endothelial cells induced production of the NF-κB downstream target IL-8, a response necessary for angiogenesis. Finally, we could show through co-immunofluorescence for p65 and CD31 that Sema4D produced by tumor xenografts in nude mice activated NF-κB in vessels of the tumor stroma.

Conclusion/significance: These findings provide evidence that Sema4D/Plexin-B1-mediated NF-κB activation and IL-8 production is critical in the generation a pro-angiogenic phenotype in endothelial cells and suggests a new therapeutic target for the anti-angiogenic treatment of some cancers.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3196529PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0025826PLOS

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