Functional cross-talk between Tie2 and Integrin signaling pathways is essential to coordinate endothelial cell adhesion and migration in response to the extracellular matrix, yet the mechanisms behind this phenomenon are unclear. Here, we examine the possibility that receptor cross-talk is driven through uncharacterized Tie-integrin interactions on the endothelial surface. Using a live cell FRET-based proximity assay, we monitor Tie-integrin receptor recognition and demonstrate that both Tie1 and Tie2 readily associate with integrins α5ß1 and αVß3 through their respective ectodomains. Although not required, Tie2-integrin association is significantly enhanced in the presence of the extracellular component and integrin ligand fibronectin. In ...
The primary function of the vascular system is the maintenance of oxygen homeostasis for all metazoa...
Compared to lower metazoans, vertebrates built up an exclusively new set of adhesion-related genes i...
A critical role for Tie1, an orphan endothelial receptor, in blood vessel morphogenesis has emerged ...
Functional cross-talk between Tie2 and Integrin signaling pathways is essential to coordinate endoth...
<div><p>Functional cross-talk between Tie2 and Integrin signaling pathways is essential to coordinat...
During angiogenic remodeling, Ang-1, the ligand of Tie2 tyrosine kinase, is involved in vessel sprou...
Pathological angiogenesis is an essential component of tumor growth, development, and metastasis for...
The primary function of the vascular system is the maintenance of oxygen homeostasis for all metazoa...
Angiopoietins regulate vascular homeostasis via the endothelial Tie receptor tyrosine kinases. Angio...
Angiopoietins regulate vascular homeostasis via the endothelial Tie receptor tyrosine kinases. Angio...
The receptor tyrosine kinase Tie2, and its activating ligand Angiopoietin-1 (Ang1), are required for...
The angiopoietin/Tie (ANG/Tie) receptor system controls developmental and tumor angiogenesis, inflam...
<p>A functioning vasculature is critical for the supply of nutrients to other systems as well as a h...
AbstractAngiopoietin-1 (Ang1) and Ang2 are ligands for the receptor tyrosine kinase Tie2. Structural...
VSMC, vascular smooth muscle cells Angiopoietin-1 (Ang1) binds to and activates Tie2 re-ceptor tyros...
The primary function of the vascular system is the maintenance of oxygen homeostasis for all metazoa...
Compared to lower metazoans, vertebrates built up an exclusively new set of adhesion-related genes i...
A critical role for Tie1, an orphan endothelial receptor, in blood vessel morphogenesis has emerged ...
Functional cross-talk between Tie2 and Integrin signaling pathways is essential to coordinate endoth...
<div><p>Functional cross-talk between Tie2 and Integrin signaling pathways is essential to coordinat...
During angiogenic remodeling, Ang-1, the ligand of Tie2 tyrosine kinase, is involved in vessel sprou...
Pathological angiogenesis is an essential component of tumor growth, development, and metastasis for...
The primary function of the vascular system is the maintenance of oxygen homeostasis for all metazoa...
Angiopoietins regulate vascular homeostasis via the endothelial Tie receptor tyrosine kinases. Angio...
Angiopoietins regulate vascular homeostasis via the endothelial Tie receptor tyrosine kinases. Angio...
The receptor tyrosine kinase Tie2, and its activating ligand Angiopoietin-1 (Ang1), are required for...
The angiopoietin/Tie (ANG/Tie) receptor system controls developmental and tumor angiogenesis, inflam...
<p>A functioning vasculature is critical for the supply of nutrients to other systems as well as a h...
AbstractAngiopoietin-1 (Ang1) and Ang2 are ligands for the receptor tyrosine kinase Tie2. Structural...
VSMC, vascular smooth muscle cells Angiopoietin-1 (Ang1) binds to and activates Tie2 re-ceptor tyros...
The primary function of the vascular system is the maintenance of oxygen homeostasis for all metazoa...
Compared to lower metazoans, vertebrates built up an exclusively new set of adhesion-related genes i...
A critical role for Tie1, an orphan endothelial receptor, in blood vessel morphogenesis has emerged ...