The longer splice isoforms of VEGF (vascular endothelial growth factor)-A, including VEGF164(165), contain a highly basic HBD (heparin-binding domain). This domain allows these isoforms to interact with and localize to the HS (heparan sulfate)-rich extracellular matrix, and bind to the co-receptor Nrp-1 (neuropilin-1). Heparin-binding VEGF-A isoforms are critical for survival: mice engineered to express exclusively the non-heparin-binding VEGF120 have diminished vascular branching during embryonic development and die from postnatal angiogenesis defects shortly after birth. Although it is thought that the HBD contributes to the diverse functions of VEGF-A in both physiological and pathological processes, little is known about the molecular features within this domain that enable these functions. In the present paper, we discuss the roles of the VEGF HBD in normal and disease conditions, with a particular focus on the VEGF164(165) isoform.
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December 2009
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Conference Article|
November 19 2009
The heparin-binding domain confers diverse functions of VEGF-A in development and disease: a structure–function study
Dominik Krilleke;
Dominik Krilleke
1Ocular Biology and Therapeutics, UCL Institute of Ophthalmology, 11–43 Bath Street, London EC1V 9EL, U.K.
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Yin-Shan Eric Ng;
Yin-Shan Eric Ng
1Ocular Biology and Therapeutics, UCL Institute of Ophthalmology, 11–43 Bath Street, London EC1V 9EL, U.K.
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David T. Shima
David T. Shima
1
1Ocular Biology and Therapeutics, UCL Institute of Ophthalmology, 11–43 Bath Street, London EC1V 9EL, U.K.
1To whom correspondence should be addressed (email d.shima@ucl.ac.uk).
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Biochem Soc Trans (2009) 37 (6): 1201–1206.
Article history
Received:
July 07 2009
Citation
Dominik Krilleke, Yin-Shan Eric Ng, David T. Shima; The heparin-binding domain confers diverse functions of VEGF-A in development and disease: a structure–function study. Biochem Soc Trans 1 December 2009; 37 (6): 1201–1206. doi: https://doi.org/10.1042/BST0371201
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