Context-dependent functions of angiopoietin 2 are determined by the endothelial phosphatase VEPTP.

dc.contributor.author

Souma, Tomokazu

dc.contributor.author

Thomson, Benjamin R

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Heinen, Stefan

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Carota, Isabel Anna

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Yamaguchi, Shinji

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Onay, Tuncer

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Liu, Pan

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Ghosh, Asish K

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Li, Chengjin

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Eremina, Vera

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Hong, Young-Kwon

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Economides, Aris N

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Vestweber, Dietmar

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Peters, Kevin G

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Jin, Jing

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Quaggin, Susan E

dc.date.accessioned

2018-05-01T15:16:06Z

dc.date.available

2018-05-01T15:16:06Z

dc.date.issued

2018-02

dc.date.updated

2018-05-01T15:16:04Z

dc.description.abstract

The angiopoietin (ANGPT)-TIE2/TEK signaling pathway is essential for blood and lymphatic vascular homeostasis. ANGPT1 is a potent TIE2 activator, whereas ANGPT2 functions as a context-dependent agonist/antagonist. In disease, ANGPT2-mediated inhibition of TIE2 in blood vessels is linked to vascular leak, inflammation, and metastasis. Using conditional knockout studies in mice, we show TIE2 is predominantly activated by ANGPT1 in the cardiovascular system and by ANGPT2 in the lymphatic vasculature. Mechanisms underlying opposing actions of ANGPT2 in blood vs. lymphatic endothelium are poorly understood. Here we show the endothelial-specific phosphatase VEPTP (vascular endothelial protein tyrosine phosphatase) determines TIE2 response to ANGPT2. VEPTP is absent from lymphatic endothelium in mouse in vivo, permitting ANGPT2/TIE2-mediated lymphangiogenesis. Inhibition of VEPTP converts ANGPT2 into a potent TIE2 activator in blood endothelium. Our data support a model whereby VEPTP functions as a rheostat to modulate ANGPT2 ligand effect on TIE2.

dc.identifier.issn

0027-8424

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1091-6490

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https://hdl.handle.net/10161/16646

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eng

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Proceedings of the National Academy of Sciences

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Proceedings of the National Academy of Sciences of the United States of America

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10.1073/pnas.1714446115

dc.subject

VEPTP

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angiogenesis

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angiopoietin–TIE2 pathway

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lymphangiogenesis

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tyrosine kinase

dc.title

Context-dependent functions of angiopoietin 2 are determined by the endothelial phosphatase VEPTP.

dc.type

Journal article

duke.contributor.orcid

Souma, Tomokazu|0000-0002-3285-8613

pubs.issue

6

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School of Medicine

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Duke

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Medicine, Nephrology

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Medicine

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Clinical Science Departments

pubs.publication-status

Published

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115

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