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YAP/TAZ-CDC42 signaling regulates vascular tip cell migration.


ABSTRACT: Angiogenesis and vascular remodeling are essential for the establishment of vascular networks during organogenesis. Here we show that the Hippo signaling pathway effectors YAP and TAZ are required, in a gene dosage-dependent manner, for the proliferation and migration of vascular endothelial cells (ECs) during retinal angiogenesis. Intriguingly, nuclear translocation of YAP and TAZ induced by Lats1/2-deletion blocked endothelial migration and phenocopied Yap/Taz-deficient mutants. Furthermore, overexpression of a cytoplasmic form of YAP (YAPS127D) partially rescued the migration defects caused by loss of YAP and TAZ function. Finally, we found that cytoplasmic YAP positively regulated the activity of the small GTPase CDC42, deletion of which caused severe defects in endothelial migration. These findings uncover a previously unrecognized role of cytoplasmic YAP/TAZ in promoting cell migration by activating CDC42 and provide insight into how Hippo signaling in ECs regulates angiogenesis.

SUBMITTER: Sakabe M 

PROVIDER: S-EPMC5642684 | biostudies-other | 2017 Oct

REPOSITORIES: biostudies-other

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YAP/TAZ-CDC42 signaling regulates vascular tip cell migration.

Sakabe Masahide M   Fan Jieqing J   Odaka Yoshinobu Y   Liu Ning N   Hassan Aishlin A   Duan Xin X   Stump Paige P   Byerly Luke L   Donaldson Megan M   Hao Jiukuan J   Fruttiger Marcus M   Lu Qing Richard QR   Zheng Yi Y   Lang Richard A RA   Xin Mei M  

Proceedings of the National Academy of Sciences of the United States of America 20170925 41


Angiogenesis and vascular remodeling are essential for the establishment of vascular networks during organogenesis. Here we show that the Hippo signaling pathway effectors YAP and TAZ are required, in a gene dosage-dependent manner, for the proliferation and migration of vascular endothelial cells (ECs) during retinal angiogenesis. Intriguingly, nuclear translocation of YAP and TAZ induced by <i>Lats1</i>/<i>2</i>-deletion blocked endothelial migration and phenocopied <i>Yap/Taz</i>-deficient mu  ...[more]

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