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Essential regulation of CNS angiogenesis by the orphan G protein-coupled receptor GPR124.


ABSTRACT: The orphan G protein-coupled receptor (GPCR) GPR124/tumor endothelial marker 5 is highly expressed in central nervous system (CNS) endothelium. Here, we show that complete null or endothelial-specific GPR124 deletion resulted in embryonic lethality from CNS-specific angiogenesis arrest in forebrain and neural tube. Conversely, GPR124 overexpression throughout all adult vascular beds produced CNS-specific hyperproliferative vascular malformations. In vivo, GPR124 functioned cell-autonomously in endothelium to regulate sprouting, migration, and developmental expression of the blood-brain barrier marker Glut1, whereas in vitro, GPR124 mediated Cdc42-dependent directional migration to forebrain-derived, vascular endothelial growth factor-independent cues. Our results demonstrate CNS-specific angiogenesis regulation by an endothelial receptor and illuminate functions of the poorly understood adhesion GPCR subfamily. Further, the functional tropism of GPR124 marks this receptor as a therapeutic target for CNS-related vascular pathologies.

SUBMITTER: Kuhnert F 

PROVIDER: S-EPMC3099479 | biostudies-literature | 2010 Nov

REPOSITORIES: biostudies-literature

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Essential regulation of CNS angiogenesis by the orphan G protein-coupled receptor GPR124.

Kuhnert Frank F   Mancuso Michael R MR   Shamloo Amir A   Wang Hsiao-Ting HT   Choksi Vir V   Florek Mareike M   Su Hua H   Fruttiger Marcus M   Young William L WL   Heilshorn Sarah C SC   Kuo Calvin J CJ  

Science (New York, N.Y.) 20101101 6006


The orphan G protein-coupled receptor (GPCR) GPR124/tumor endothelial marker 5 is highly expressed in central nervous system (CNS) endothelium. Here, we show that complete null or endothelial-specific GPR124 deletion resulted in embryonic lethality from CNS-specific angiogenesis arrest in forebrain and neural tube. Conversely, GPR124 overexpression throughout all adult vascular beds produced CNS-specific hyperproliferative vascular malformations. In vivo, GPR124 functioned cell-autonomously in e  ...[more]

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