The recombinant lectin-like domain of thrombomodulin inhibits angiogenesis through interaction with Lewis Y antigen

Author:

Kuo Cheng-Hsiang123,Chen Po-Ku123,Chang Bi-Ing13,Sung Meng-Chen1,Shi Chung-Sheng1,Lee Jeng-Shin4,Chang Chuan-Fa35,Shi Guey-Yueh13,Wu Hua-Lin136

Affiliation:

1. Department of Biochemistry and Molecular Biology,

2. Institute of Basic Medical Sciences, and

3. Cardiovascular Research Center, College of Medicine, National Cheng Kung University, Tainan, Taiwan;

4. Harvard Gene Therapy Initiative, Harvard Medical School, Boston, MA; and

5. Department of Medical Laboratory Science and Biotechnology, College of Medicine, and

6. Center for Bioscience and Biotechnology, National Cheng Kung University, Tainan, Taiwan

Abstract

AbstractLewis Y Ag (LeY) is a cell-surface tetrasaccharide that participates in angiogenesis. Recently, we demonstrated that LeY is a specific ligand of the recombinant lectin-like domain of thrombomodulin (TM). However, the biologic function of interaction between LeY and TM in endothelial cells has never been investigated. Therefore, the role of LeY in tube formation and the role of the recombinant lectin-like domain of TM—TM domain 1 (rTMD1)—in antiangiogenesis were investigated. The recombinant TM ectodomain exhibited lower angiogenic activity than did the recombinant TM domains 2 and 3. rTMD1 interacted with soluble LeY and membrane-bound LeY and inhibited soluble LeY-mediated chemotaxis of endothelial cells. LeY was highly expressed on membrane ruffles and protrusions during tube formation on Matrigel. Blockade of LeY with rTMD1 or Ab against LeY inhibited endothelial tube formation in vitro. Epidermal growth factor (EGF) receptor in HUVECs was LeY modified. rTMD1 inhibited EGF receptor signaling, chemotaxis, and tube formation in vitro, and EGF-mediated angiogenesis and tumor angiogenesis in vivo. We concluded that LeY is involved in vascular endothelial tube formation and rTMD1 inhibits angiogenesis via interaction with LeY. Administration of rTMD1 or recombinant adeno-associated virus vector carrying TMD1 could be a promising antiangiogenesis strategy.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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