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Cancer Research 69, 5537, July 1, 2009. Published Online First June 23, 2009;
doi: 10.1158/0008-5472.CAN-08-4841
© 2009 American Association for Cancer Research

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Molecular Biology, Pathobiology, and Genetics

Plasminogen Kringle 5 Induces Apoptosis of Brain Microvessel Endothelial Cells: Sensitization by Radiation and Requirement for GRP78 and LRP1

Braden C. McFarland1,2, Jerry Stewart, Jr.1, Amal Hamza1, Robert Nordal3, Donald J. Davidson4, Jack Henkin4 and Candece L. Gladson1,2

1 Division of Neuropathology, Departments of Pathology, 2 Neurobiology, and 3 Radiation Oncology, The University of Alabama at Birmingham, Birmingham, Alabama and 4 Abbott Laboratories, Abbott Park, Illinois

Requests for reprints: Candece L. Gladson, Lerner Research Institute, Department of Cancer Biology, NB40, Cleveland Clinic, 9500 Euclid Avenue, Cleveland, OH 44195. Phone: 216-636-9493; Fax: 216-444-3364; E-mail: gladsoc{at}ccf.org.

Key Words: brain endothelial cells • plasminogen • Kringle 5 • LRP1 • GRP78 • apoptosis

Recombinant plasminogen kringle 5 (rK5) has been shown to induce apoptosis of dermal microvessel endothelial cells (MvEC) in a manner that requires glucose-regulated protein 78 (GRP78). As we are interested in antiangiogenic therapy for glioblastoma tumors, and the effectiveness of antiangiogenic therapy can be enhanced when combined with radiation, we investigated the proapoptotic effects of rK5 combined with radiation on brain MvEC. We found that rK5 treatment of brain MvEC induced apoptosis in a dose- and time-dependent manner and that prior irradiation significantly sensitized (500-fold) the cells to rK5-induced apoptosis. The rK5-induced apoptosis of both unirradiated and irradiated MvEC required expression of GRP78 and the low-density lipoprotein receptor-related protein 1 (LRP1), a scavenger receptor, based on down-regulation studies with small interfering RNA, and blocking studies with either a GRP78 antibody or a competitive inhibitor of ligand binding to LRP1. Furthermore, p38 mitogen-activated protein kinase was found to be a necessary downstream effector for rK5-induced apoptosis. These data suggest that irradiation sensitizes brain MvEC to the rK5-induced apoptosis and that this signal requires LRP1 internalization of GRP78 and the activation of p38 mitogen-activated protein kinase. Our findings suggest that prior irradiation would have a dose-sparing effect on rK5 antiangiogenic therapy for brain tumors and further suggest that the effects of rK5 would be tumor specific, as the expression of GRP78 protein is up-regulated on the brain MvEC in glioblastoma tumor biopsies compared with the normal brain. [Cancer Res 2009;69(13):5537–45]







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Copyright © 2009 by the American Association for Cancer Research.