Pages that link to "Q28189338"
Jump to navigation
Jump to search
The following pages link to Class 3 semaphorins control vascular morphogenesis by inhibiting integrin function (Q28189338):
Displaying 50 items.
- Brain endothelial cells control fertility through ovarian-steroid-dependent release of semaphorin 3A (Q21145711) (← links)
- Blocking neuropilin-1 function has an additive effect with anti-VEGF to inhibit tumor growth (Q24293042) (← links)
- Semaphorin-4A, an activator for T-cell-mediated immunity, suppresses angiogenesis via Plexin-D1 (Q24298191) (← links)
- Atypical GPI-anchored T-cadherin stimulates angiogenesis in vitro and in vivo (Q24298258) (← links)
- Effect of cancer-associated mutations in the PlexinB1 gene (Q24306887) (← links)
- Semaphorin 5A and plexin-B3 regulate human glioma cell motility and morphology through Rac1 and the actin cytoskeleton (Q24307909) (← links)
- Semaphorin 5A promotes angiogenesis by increasing endothelial cell proliferation, migration, and decreasing apoptosis (Q24309731) (← links)
- FAK-MAPK-dependent adhesion disassembly downstream of L1 contributes to semaphorin3A-induced collapse (Q24310437) (← links)
- Semaphorin 4D/plexin-B1 induces endothelial cell migration through the activation of PYK2, Src, and the phosphatidylinositol 3-kinase-Akt pathway (Q24311648) (← links)
- Repulsive axon guidance molecule Slit3 is a novel angiogenic factor (Q24315030) (← links)
- GATA6 mutations cause human cardiac outflow tract defects by disrupting semaphorin-plexin signaling (Q24322838) (← links)
- Inactivation of the Sema5a gene results in embryonic lethality and defective remodeling of the cranial vascular system (Q24519075) (← links)
- Selective suppression of in vivo tumorigenicity by semaphorin SEMA3F in lung cancer cells (Q24550871) (← links)
- Semaphorin 3F, a chemorepulsant for endothelial cells, induces a poorly vascularized, encapsulated, nonmetastatic tumor phenotype (Q24562741) (← links)
- Semaphorin-PlexinD1 signaling limits angiogenic potential via the VEGF decoy receptor sFlt1 (Q24617241) (← links)
- Selective requirements for NRP1 ligands during neurovascular patterning (Q24657194) (← links)
- Plexin-B1/RhoGEF-mediated RhoA activation involves the receptor tyrosine kinase ErbB-2 (Q24676439) (← links)
- Dynamic regulation of integrin activation by intracellular and extracellular signals controls oligodendrocyte morphology (Q24812455) (← links)
- Platelet signaling: a complex interplay between inhibitory and activatory networks (Q26765384) (← links)
- NRP1 function and targeting in neurovascular development and eye disease (Q26765952) (← links)
- Wiring the Vascular Network with Neural Cues: A CNS Perspective (Q26800182) (← links)
- αV integrins in angiogenesis and cancer (Q26851768) (← links)
- Neuropilins: expression and roles in the epithelium (Q26998786) (← links)
- Enhancing integrin function by VEGF/neuropilin signaling: implications for tumor biology (Q27022814) (← links)
- Neuropilins and liver (Q27024032) (← links)
- Control of cellular motility by neuropilin-mediated physical interactions (Q27027713) (← links)
- Early arterial differentiation and patterning in the avian embryo model (Q27027831) (← links)
- Semaphorin 3A suppresses tumor growth and metastasis in mice melanoma model (Q27306612) (← links)
- Neuropilin-1/GIPC1 signaling regulates alpha5beta1 integrin traffic and function in endothelial cells. (Q27331901) (← links)
- Binding of Rac1, Rnd1, and RhoD to a Novel Rho GTPase Interaction Motif Destabilizes Dimerization of the Plexin-B1 Effector Domain (Q27648718) (← links)
- Insights into Oncogenic Mutations of Plexin-B1 Based on the Solution Structure of the Rho GTPase Binding Domain (Q27649860) (← links)
- A perspective on the role of class III semaphorin signaling in central nervous system trauma (Q28251368) (← links)
- N-cadherin acts upstream of VE-cadherin in controlling vascular morphogenesis (Q28505270) (← links)
- Neuropilin-1 is required for endothelial tip cell guidance in the developing central nervous system (Q28506910) (← links)
- Quantitative characterization of cellular membrane-receptor heterogeneity through statistical and computational modeling (Q28538791) (← links)
- Semaphorin 4B interacts with the post-synaptic density protein PSD-95/SAP90 and is recruited to synapses through a C-terminal PDZ-binding motif (Q28582657) (← links)
- Vascular development of the brain requires beta8 integrin expression in the neuroepithelium (Q28593459) (← links)
- Semaphorin 3E initiates antiangiogenic signaling through plexin D1 by regulating Arf6 and R-Ras. (Q28593676) (← links)
- Identification and characterization of a novel member of murine semaphorin family (Q28941241) (← links)
- Phosphatidylinositol-4-phosphate 5-kinase and GEP100/Brag2 protein mediate antiangiogenic signaling by semaphorin 3E-plexin-D1 through Arf6 protein (Q30424835) (← links)
- Bidirectional remodeling of β1-integrin adhesions during chemotropic regulation of nerve growth. (Q30428286) (← links)
- Asymmetric endocytosis and remodeling of beta1-integrin adhesions during growth cone chemorepulsion by MAG. (Q30431427) (← links)
- Plexin-B1 mutations in prostate cancer (Q30480866) (← links)
- ABL2/ARG tyrosine kinase mediates SEMA3F-induced RhoA inactivation and cytoskeleton collapse in human glioma cells (Q30483797) (← links)
- An anteroposterior wave of vascular inhibitor downregulation signals aortae fusion along the embryonic midline axis (Q30497126) (← links)
- Semaphorins guide the entry of dendritic cells into the lymphatics by activating myosin II (Q30498266) (← links)
- Successful inhibition of tumor development by specific class-3 semaphorins is associated with expression of appropriate semaphorin receptors by tumor cells (Q33372124) (← links)
- Genome wide screen identifies microsatellite markers associated with acute adverse effects following radiotherapy in cancer patients (Q33654687) (← links)
- Sema3A promotes the resolution of cardiac inflammation after myocardial infarction (Q33725963) (← links)
- High concentrations of HGF inhibit skeletal muscle satellite cell proliferation in vitro by inducing expression of myostatin: a possible mechanism for reestablishing satellite cell quiescence in vivo. (Q33727656) (← links)