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VEGF-B prevents excessive angiogenesis by inhibiting FGF2/FGFR1 pathway.

Authors :
Lee C
Chen R
Sun G
Liu X
Lin X
He C
Xing L
Liu L
Jensen LD
Kumar A
Langer HF
Ren X
Zhang J
Huang L
Yin X
Kim J
Zhu J
Huang G
Li J
Lu W
Chen W
Liu J
Hu J
Sun Q
Lu W
Fang L
Wang S
Kuang H
Zhang Y
Tian G
Mi J
Kang BA
Narazaki M
Prodeus A
Schoonjans L
Ornitz DM
Gariepy J
Eelen G
Dewerchin M
Yang Y
Ou JS
Mora A
Yao J
Zhao C
Liu Y
Carmeliet P
Cao Y
Li X
Source :
Signal transduction and targeted therapy [Signal Transduct Target Ther] 2023 Aug 18; Vol. 8 (1), pp. 305. Date of Electronic Publication: 2023 Aug 18.
Publication Year :
2023

Abstract

Although VEGF-B was discovered as a VEGF-A homolog a long time ago, the angiogenic effect of VEGF-B remains poorly understood with limited and diverse findings from different groups. Notwithstanding, drugs that inhibit VEGF-B together with other VEGF family members are being used to treat patients with various neovascular diseases. It is therefore critical to have a better understanding of the angiogenic effect of VEGF-B and the underlying mechanisms. Using comprehensive in vitro and in vivo methods and models, we reveal here for the first time an unexpected and surprising function of VEGF-B as an endogenous inhibitor of angiogenesis by inhibiting the FGF2/FGFR1 pathway when the latter is abundantly expressed. Mechanistically, we unveil that VEGF-B binds to FGFR1, induces FGFR1/VEGFR1 complex formation, and suppresses FGF2-induced Erk activation, and inhibits FGF2-driven angiogenesis and tumor growth. Our work uncovers a previously unrecognized novel function of VEGF-B in tethering the FGF2/FGFR1 pathway. Given the anti-angiogenic nature of VEGF-B under conditions of high FGF2/FGFR1 levels, caution is warranted when modulating VEGF-B activity to treat neovascular diseases.<br /> (© 2023. West China Hospital, Sichuan University.)

Details

Language :
English
ISSN :
2059-3635
Volume :
8
Issue :
1
Database :
MEDLINE
Journal :
Signal transduction and targeted therapy
Publication Type :
Academic Journal
Accession number :
37591843
Full Text :
https://doi.org/10.1038/s41392-023-01539-9