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The tight junction protein Claudin-5 limits endothelial cell motility.
Yang, Zhenguo; Wu, Shuilong; Fontana, Federica; Li, Yanyu; Xiao, Wei; Gao, Zhangdai; Krudewig, Alice; Affolter, Markus; Belting, Heinz-Georg; Abdelilah-Seyfried, Salim; Zhang, Jingjing.
Afiliação
  • Yang Z; Affiliated Hospital of Guangdong Medical University & Key Laboratory of Zebrafish Model for Development and Disease, Guangdong Medical University, Zhanjiang 524001, China.
  • Wu S; Affiliated Hospital of Guangdong Medical University & Key Laboratory of Zebrafish Model for Development and Disease, Guangdong Medical University, Zhanjiang 524001, China.
  • Fontana F; Institute of Biochemistry and Biology, Potsdam University, D-14476 Potsdam, Germany.
  • Li Y; Affiliated Hospital of Guangdong Medical University & Key Laboratory of Zebrafish Model for Development and Disease, Guangdong Medical University, Zhanjiang 524001, China.
  • Xiao W; Affiliated Hospital of Guangdong Medical University & Key Laboratory of Zebrafish Model for Development and Disease, Guangdong Medical University, Zhanjiang 524001, China.
  • Gao Z; Affiliated Hospital of Guangdong Medical University & Key Laboratory of Zebrafish Model for Development and Disease, Guangdong Medical University, Zhanjiang 524001, China.
  • Krudewig A; Department of Cell Biology, Biozentrum der Universität Basel, Klingelbergstrasse 70, CH-4056 Basel, Switzerland.
  • Affolter M; Department of Cell Biology, Biozentrum der Universität Basel, Klingelbergstrasse 70, CH-4056 Basel, Switzerland.
  • Belting HG; Department of Cell Biology, Biozentrum der Universität Basel, Klingelbergstrasse 70, CH-4056 Basel, Switzerland.
  • Abdelilah-Seyfried S; Institute of Biochemistry and Biology, Potsdam University, D-14476 Potsdam, Germany jingjing.zhang@live.com salim.seyfried@uni-potsdam.de.
  • Zhang J; Institute of Molecular Biology, Hannover Medical School, Carl-Neuberg Str. 1, D-30625 Hannover, Germany.
J Cell Sci ; 134(1)2021 01 11.
Article em En | MEDLINE | ID: mdl-33323504
Steinberg's differential adhesion hypothesis suggests that adhesive mechanisms are important for sorting of cells and tissues during morphogenesis (Steinberg, 2007). During zebrafish vasculogenesis, endothelial cells sort into arterial and venous vessel beds but it is unknown whether this involves adhesive mechanisms. Claudins are tight junction proteins regulating the permeability of epithelial and endothelial tissue barriers. Previously, the roles of claudins during organ development have exclusively been related to their canonical functions in determining paracellular permeability. Here, we use atomic force microscopy to quantify claudin-5-dependent adhesion and find that this strongly contributes to the adhesive forces between arterial endothelial cells. Based on genetic manipulations, we reveal a non-canonical role of Claudin-5a during zebrafish vasculogenesis, which involves the regulation of adhesive forces between adjacent dorsal aortic endothelial cells. In vitro and in vivo studies demonstrate that loss of claudin-5 results in increased motility of dorsal aorta endothelial cells and in a failure of the dorsal aorta to lumenize. Our findings uncover a novel role of claudin-5 in limiting arterial endothelial cell motility, which goes beyond its traditional sealing function during embryonic development.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Junções Íntimas / Proteínas de Junções Íntimas Limite: Animals Idioma: En Revista: J Cell Sci Ano de publicação: 2021 Tipo de documento: Article País de afiliação: China

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Junções Íntimas / Proteínas de Junções Íntimas Limite: Animals Idioma: En Revista: J Cell Sci Ano de publicação: 2021 Tipo de documento: Article País de afiliação: China