PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 1, 2002Journal of Biological Chemistry255 citationsOpen Access

ANGPTL3 Stimulates Endothelial Cell Adhesion and Migration via Integrin αvβ3 and Induces Blood Vessel Formation in Vivo

GCGieri CamenischMPM. Teresa PisabarroDSDaniel Sherman

Key Result

Recombinant ANGPTL3 bound to integrin αvβ3, induced endothelial cell adhesion and migration, and strongly stimulated in vivo angiogenesis in a rat corneal assay.

Key Points

  • To identify receptor interactions and downstream signaling pathways of ANGPTL3 and evaluate its role in endothelial cell function and in vivo angiogenesis.
  • Screened expressed sequence tag databases to identify ANGPTL3 and assessed receptor binding with Tie2 and integrin αvβ3 via co-immunoprecipitation and molecular modeling.
  • Assayed endothelial cell adhesion, haptotactic migration, and phosphorylation of Akt, MAPK, and focal adhesion kinase in vitro.
  • Evaluated in vivo neovascularization using a rat corneal angiogenesis assay comparing ANGPTL3 and its C-terminal domain to vascular endothelial growth factor-A.
  • Recombinant ANGPTL3 bound directly to integrin αvβ3 rather than Tie2, activating downstream Akt, MAPK, and focal adhesion kinase signaling pathways.
  • ANGPTL3 and its isolated C-terminal fibrinogen-like domain promoted integrin αvβ3-dependent endothelial cell adhesion and migration.
  • ANGPTL3 strongly induced in vivo angiogenesis in the rat corneal assay with a magnitude of vessel formation comparable to vascular endothelial growth factor-A.

Structured PICO

P
Population
Endothelial cells and rat corneal assay model
I
Intervention
Recombinant ANGPTL3 and its C-terminal FBN-like domain
C
Comparator
Vascular endothelial growth factor-A (VEGF-A) in rat corneal assay
O
Outcome
Endothelial cell adhesion, migration, signal transduction activation, and in vivo angiogenesissurrogate

ANGPTL3 binds to integrin αvβ3 to stimulate endothelial cell adhesion, migration, and in vivo angiogenesis, highlighting its potential role in vascular biology.

Abstract

The angiopoietin family of secreted factors is functionally defined by the C-terminal fibrinogen (FBN)-like domain, which mediates binding to the Tie2 receptor and thereby facilitates a cascade of events ultimately regulating blood vessel formation. By screening expressed sequence tag data bases for homologies to a consensus FBN-like motive, we have identified ANGPTL3, a liver-specific, secreted factor consisting of an N-terminal coiled-coil domain and the C-terminal FBN-like domain. Co-immunoprecipitation experiments, however, failed to detect binding of ANGPTL3 to the Tie2 receptor. A molecular model of the FBN-like domain of ANGPTL3 was generated and predicted potential binding to integrins. This hypothesis was experimentally confirmed by the finding that recombinant ANGPTL3 bound to alpha(v)beta(3) and induced integrin alpha(v)beta(3)-dependent haptotactic endothelial cell adhesion and migration and stimulated signal transduction pathways characteristic for integrin activation, including phosphorylation of Akt, mitogen-activated protein kinase, and focal adhesion kinase. When tested in the rat corneal assay, ANGPTL3 strongly induced angiogenesis with comparable magnitude as observed for vascular endothelial growth factor-A. Moreover, the C-terminal FBN-like domain alone was sufficient to induce endothelial cell adhesion and in vivo angiogenesis. Taken together, our data demonstrate that ANGPTL3 is the first member of the angiopoietin-like family of secreted factors binding to integrin alpha(v)beta(3) and suggest a possible role in the regulation of angiogenesis.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Camenisch et al. (2002) studied Angiogenesis. Recombinant ANGPTL3 vs. Vascular endothelial growth factor-A was evaluated on Endothelial cell adhesion, migration, and in vivo angiogenesis. Recombinant ANGPTL3 bound to integrin αvβ3, induced endothelial cell adhesion and migration, and strongly stimulated in vivo angiogenesis in a rat corneal assay.

synapsesocial.com/papers/6a18d793b695030898308402https://doi.org/10.1074/jbc.m109768200
Ask AI
Helpful
Bookmark
Share
View Full Paper