Endorepellin causes endothelial cell disassembly of actin cytoskeleton and focal adhesions through α2β1 integrin

Author:

Bix Gregory1,Fu Jian1,Gonzalez Eva M.1,Macro Laura1,Barker Amy1,Campbell Shelly1,Zutter Mary M.2,Santoro Samuel A.2,Kim Jiyeun K.3,Höök Magnus3,Reed Charles C.1,Iozzo Renato V.1

Affiliation:

1. Department of Pathology, Anatomy and Cell Biology, and the Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, PA 19107

2. Department of Pathology, Vanderbilt University, Nashville, TN 37232

3. Center for Extracellular Matrix Biology, Institute of Biosciences and Technology, Texas A&M University, Houston, TX 77030

Abstract

Endorepellin, the COOH-terminal domain of the heparan sulfate proteoglycan perlecan, inhibits several aspects of angiogenesis. We provide evidence for a novel biological axis that links a soluble fragment of perlecan protein core to the major cell surface receptor for collagen I, α2β1 integrin, and provide an initial investigation of the intracellular signaling events that lead to endorepellin antiangiogenic activity. The interaction between endorepellin and α2β1 integrin triggers a unique signaling pathway that causes an increase in the second messenger cAMP; activation of two proximal kinases, protein kinase A and focal adhesion kinase; transient activation of p38 mitogen-activated protein kinase and heat shock protein 27, followed by a rapid down-regulation of the latter two proteins; and ultimately disassembly of actin stress fibers and focal adhesions. The end result is a profound block of endothelial cell migration and angiogenesis. Because perlecan is present in both endothelial and smooth muscle cell basement membranes, proteolytic activity during the initial stages of angiogenesis could liberate antiangiogenic fragments from blood vessels' walls, including endorepellin.

Publisher

Rockefeller University Press

Subject

Cell Biology

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