Interactions between VEGFR and Notch signaling pathways in endothelial and neural cells
Identifieur interne : 003542 ( Main/Exploration ); précédent : 003541; suivant : 003543Interactions between VEGFR and Notch signaling pathways in endothelial and neural cells
Auteurs : Jean-Leon Thomas ; Kasey Baker ; Jinah Han ; Charles Calvo ; Harri Nurmi ; Anne C. Eichmann ; Kari Alitalo [Finlande]Source :
- Cellular and molecular life sciences : CMLS [ 1420-682X ] ; 2013.
Abstract
Notch cell interaction mechanism governs cell fate decisions in many different cell contexts throughout the lifetime of all Metazoan species. It links the fate of one cell to that of its neighbors through cell-to-cell contacts, and binding of Notch receptors expressed on one cell to their membrane bound ligands on an adjacent cell. Environmental cues, such as growth factors and extracellular matrix molecules, superimpose a dynamic regulation on this canonical Notch signaling pathway. In this review, we will focus on Notch signaling in the vertebrate vascular and nervous systems and examine its role in angiogenesis, neurogenesis, and neurovascular interactions. We will also highlight the molecular relationships of the Notch pathway with vascular endothelial growth factors (VEGFs) and their high-affinity tyrosine kinase VEGF receptors, key regulators of both angiogenesis and neurogenesis.
Url:
DOI: 10.1007/s00018-013-1312-6
PubMed: 23479133
PubMed Central: 3648205
Affiliations:
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Le document en format XML
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<front><div type="abstract" xml:lang="en"><p id="P1">Notch cell interaction mechanism governs cell fate decisions in many different cell contexts throughout the lifetime of all Metazoan species. It links the fate of one cell to that of its neighbors through cell-to-cell contacts, and binding of Notch receptors expressed on one cell to their membrane bound ligands on an adjacent cell. Environmental cues, such as growth factors and extracellular matrix molecules, superimpose a dynamic regulation on this canonical Notch signaling pathway. In this review, we will focus on Notch signaling in the vertebrate vascular and nervous systems and examine its role in angiogenesis, neurogenesis, and neurovascular interactions. We will also highlight the molecular relationships of the Notch pathway with vascular endothelial growth factors (VEGFs) and their high-affinity tyrosine kinase VEGF receptors, key regulators of both angiogenesis and neurogenesis.</p>
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