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Receptor for Slit proteins, at least for SLIT2, and seems to be involved in angiogenesis and vascular patterning. Additionally we are shipping ROBO4 Antibodies (52) and ROBO4 Proteins (7) and many more products for this protein.
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Sox7 (show SOX7 ELISA Kits) and Sox18 (show SOX18 ELISA Kits)-mediated transcriptional regulation of Robo4 is important in the developing embryonic vasculature
robo4 is essential for coordinated symmetric and directed sprouting of intersomitic vessels.
Robo4 mediates attraction-signaling mechanisms through Rho GTPases in vertebrate vascular guidance
Robo4 vaccines induce antibodies that retard tumor growth.
Robo4 and Src family kinases are involved in the mechanisms of embryonic vascular defects caused by the Hrt/Hey deficiency.
These results clearly indicate that Robo4 plays a role in hematopoietic stem cells trafficking such as bone marrow homing and peripheral mobilization.
our results showed an important role of Robo4 in the regulation of cortical radial migration through Slit-dependent and -independent mechanisms
Data found that expression of Slit2 (show SLIT2 ELISA Kits) and SDF1 (show CXCL12 ELISA Kits) were dynamically regulated in mesenchymal stem cells and OBC-like populations following radiation, while Robo4 expression was restricted to endothelial cells.
augmenting the host Robo4/Slit2 system could provide a useful therapeutic approach to control pathological angiogenesis associated with HSV induced stromal keratitis
Robo4 specifically binds to UNC5B (show UNC5B ELISA Kits), a vascular Netrin receptor, revealing unexpected interactions between two endothelial guidance receptors.
Activating with the soluble ligand Slit an endothelium-specific, Robo4-dependent signaling pathway that strengthens the vascular barrier, diminishing deleterious aspects of the host's response to the pathogen-induced cytokine storm.
enhanced growth of blood vessels in Robo4(-/-) endothelium is due to activation of vascular endothelial growth factor (VEGF)-R2 signaling through the Src and FAK kinases.
Robo4 is a bona fide member of the Robo family and may provide a repulsive cue to migrating endothelial cells during vascular development.
there was a increase in Robo4 expression under hyperglycemic conditions, while there was a decrease under hypoxic and combined hypoxic and hyperglycemic conditions, suggesting Robo4 might play different roles in various stages of diabetic retinopathy
These results suggest that Slit2/Robo1 binding exerts an effect on cell migration, which is negatively regulated by Robo4, and Robo1 may function by interacting with CdGAP in HUVECs.
results indicate that AP-1 (show FOSB ELISA Kits) complexes regulate Robo4 gene expression in endothelial cells
BM Robo4 expression can serve as a new biomarker to predict clinical outcomes in AML (show RUNX1 ELISA Kits) patients and Robo4 may serve as a potential therapeutic target in patients with higher Robo4 expression.
Robo4 suppressed glioma-induced endothelial cell proliferation, migration and tube formation in vitro by inhibiting VEGR2-mediated activation of PI3K (show PIK3CA ELISA Kits)/AKT (show AKT1 ELISA Kits) and FAK (show PTK2 ELISA Kits) signaling pathways.
Increased or decreased expression of Robo4 by stimulation or knockdown of HIF-1alpha (show HIF1A ELISA Kits) suggesting that Robo4 is positively regulated by HIF-1alpha (show HIF1A ELISA Kits) under normoxic and hypoxic conditions in microvascular endothelial cells in vitro.
Plasma Robo4 levels are increased, transiently, following cardiac surgery requiring CPB (show CPB1 ELISA Kits)
This study demonistrated that roundabout (show ROBO1 ELISA Kits) 4 regulates blood-tumor barrier permeability through the modulation of ZO-1 (show TJP1 ELISA Kits), Occludin (show OCLN ELISA Kits), and Claudin-5 (show CLDN5 ELISA Kits) expression.
Endothelial cell-specific DNA methylation (show HELLS ELISA Kits) pattern of the Robo4 proximal promoter is determined during cell differentiation and contributes to regulation of EC-specific Robo4 gene expression.
SLIT3 (show SLIT1 ELISA Kits)-ROBO4 activation promotes vascular network formation in human engineered tissue and angiogenesis in vivo.
Receptor for Slit proteins, at least for SLIT2, and seems to be involved in angiogenesis and vascular patterning. May mediate the inhibition of primary endothelial cell migration by Slit proteins (By similarity).
roundabout homolog 4
, magic roundabout
, Magic roundabout
, roundabout homolog 4, magic roundabout