| Findings suggest a new role for EphB6 in suppressing cancer invasiveness and cell attachment through c-Cbl-dependent signaling. | None |
| expression of more than 70 proteins was altered in EphB6-transfected MDA-MB-231 cells; proteins are involved in glycolysis, cell cycle regulation, tumor suppression, cell proliferation, mitochondrial metabolism, mRNA splicing, DNA replication and repair | None |
| results indicate that tumor invasiveness-suppressing activity of EPHB6 is mediated by its ability to sequester other kinase-sufficient and oncogenic EPH receptors | None |