Artigo Acesso aberto Revisado por pares

Prox1 Induces Lymphatic Endothelial Differentiation via Integrin α9 and Other Signaling Cascades

2007; American Society for Cell Biology; Volume: 18; Issue: 4 Linguagem: Inglês

10.1091/mbc.e06-09-0780

ISSN

1939-4586

Autores

Kōichi Mishima, Tetsuro Watabe, Akira Saito, Yasuhiro Yoshimatsu, Natsuko Imaizumi, Shinji Masui, Masanori Hirashima, Tohru Morisada, Yuichi Oike, Makoto Araie, Hitoshi Niwa, Hajime Kubo, Toshio Suda, Kohei Miyazono,

Tópico(s)

Angiogenesis and VEGF in Cancer

Resumo

During embryonic lymphatic development, a homeobox transcription factor Prox1 plays important roles in sprouting and migration of a subpopulation of blood vessel endothelial cells (BECs) toward VEGF-C-expressing cells. However, effects of Prox1 on endothelial cellular behavior remain to be elucidated. Here, we show that Prox1, via induction of integrin alpha9 expression, inhibits sheet formation and stimulates motility of endothelial cells. Prox1-expressing BECs preferentially migrated toward VEGF-C via up-regulation of the expression of integrin alpha9 and VEGF receptor 3 (VEGFR3). In mouse embryos, expression of VEGFR3 and integrin alpha9 is increased in Prox1-expressing lymphatic endothelial cells (LECs) compared with BECs. Knockdown of Prox1 expression in human LECs led to decrease in the expression of integrin alpha9 and VEGFR3, resulting in the decreased chemotaxes toward VEGF-C. These findings suggest that Prox1 plays important roles in conferring and maintaining the characteristics of LECs by modulating multiple signaling cascades and that integrin alpha9 may function as a key regulator of lymphangiogenesis acting downstream of Prox1.

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