Vascular Endothelial (VE)-cadherin-mediated adherens junctions involvement in cardiovascular progenitor cell specification

被引:3
作者
Maltabe, Violetta
Kouklis, Panos [1 ]
机构
[1] Univ Ioannina, Dept Med, Lab Biol, GR-45110 Ioannina, Greece
关键词
  adherens junctions; cardiovascular progenitors; VE-cadherin; VE-CADHERIN; EXPRESSION; HEART; GENE; MOUSE; MECHANOTRANSDUCTION; MORPHOGENESIS; PERMEABILITY; MECHANISMS; MOLECULES;
D O I
10.1387/ijdb.210167pk
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Vascular Endothelial cadherin, a type II classical cadherin, is the major cadherin molecule participating in homotypic cell-cell adhesion structures between endothelial cells. It associates with cytoplasmic and membrane cytoskeletal elements to form endothelial adherens junctions (AJs), pivotal in regulating endothelial barrier function in the adult. VE-cadherin-mediated AJs are also involved in signaling via direct or indirect associations with receptors. The generation of mutant animals, especially mice and zebrafish, revealed many details concerning the role of VE-cadherin-mediated AJs in cardiovascular development. In general, VE-cadherin knockout (KO) in mice is embryonic lethal due to severe cardiovascular defects, and major signaling pathways as well as vascular formation cues were discovered in developing endothelium. However, there is little information regarding AJs formation and their components in cardiovascular progenitors. We have characterized in detail the activation pattern of mouse VE-cadherin promoter (Pvec) in a mouse embryonic stem cells (ESCs) differentiation system in vitro. Surprisingly, we found that it is activated transiently in cardiac progenitors that belong to the second heart field. Based on Pvec activation, we isolated this population in vitro and found that it can self-renew by induction of the Wnt/beta-catenin pathway. Next, we successfully established cell culture conditions that allowed self-renewal of this population that consists of endothelial and cardiac progenitors. Transplantation in rat hearts showed that they can survive and differentiate to cardiomyocytes and endothelial cells. Although further characterization is needed, these cells can be used in cell-based therapies as well as in drug screening.
引用
收藏
页码:77 / 83
页数:7
相关论文
共 45 条
  • [31] Epac1 regulates integrity of endothelial cell junctions through VE-cadherin
    Kooistra, MRH
    Corada, M
    Dejana, E
    Bos, JL
    FEBS LETTERS, 2005, 579 (22): : 4966 - 4972
  • [32] Mussel adhesive protein fused with VE-cadherin extracellular domain promotes endothelial-cell tight junctions and in vivo endothelization recovery of vascular stent
    Yang, Dongchuan
    Yan, Wenhua
    Qiu, Juhui
    Huang, Yuhua
    Li, Tianhan
    Wang, Yi
    Wang, Nan
    Durkan, Colm
    Huang, Junli
    Yin, Tieying
    Wang, Guixue
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS, 2020, 108 (01) : 94 - 103
  • [33] Uremia Impacts VE-Cadherin and ZO-1 Expression in Human Endothelial Cell-to-Cell Junctions
    Maciel, Rayana A. P.
    Cunha, Regiane S.
    Busato, Valentina
    Franco, Celia R. C.
    Gregorio, Paulo C.
    Dolenga, Carla J. R.
    Nakao, Lia S.
    Massy, Ziad A.
    Boullier, Agnes
    Pecoits-Filho, Roberto
    Stinghen, Andrea E. M.
    TOXINS, 2018, 10 (10):
  • [34] Endothelial cell SMAD6 balances Alk1 function to regulate adherens junctions and hepatic vascular development
    Kulikauskas, Molly R.
    Oatley, Morgan
    Yu, Tianji
    Liu, Ziqing
    Matsumura, Lauren
    Kidder, Elise
    Ruter, Dana
    Bautch, Victoria L.
    DEVELOPMENT, 2023, 150 (21):
  • [35] Monocyte Induction of E-Selectin-Mediated Endothelial Activation Releases VE-Cadherin Junctions to Promote Tumor Cell Extravasation in the Metastasis Cascade
    Hauselmann, Irina
    Roblek, Marko
    Protsyuk, Darya
    Huck, Volker
    Knopfova, Lucia
    Graessle, Sandra
    Bauer, Alexander T.
    Schneider, Stefan W.
    Borsig, Lubor
    CANCER RESEARCH, 2016, 76 (18) : 5302 - 5312
  • [36] Targeting Vascular Endothelial-Cadherin in Tumor-Associated Blood Vessels Promotes T-cell-Mediated Immunotherapy
    Zhao, Yang
    Ting, Ka Ka
    Li, Jia
    Cogger, Victoria C.
    Chen, Jinbiao
    Johansson-Percival, Anna
    Ngiow, Shin Foong
    Holst, Jeff
    Grau, Georges
    Goel, Shom
    Muller, Thorleif
    Dejana, Elisabetta
    McCaughan, Geoff
    Smyth, Mark J.
    Ganss, Ruth
    Vadas, Mathew A.
    Gamble, Jennifer R.
    CANCER RESEARCH, 2017, 77 (16) : 4434 - 4447
  • [37] Human first-trimester decidua vascular density:: An immunohistochemical study using VE-cadherin and endoglin as endothelial cell markers
    Vailhé, B
    Kapp, M
    Dietl, J
    Arck, P
    AMERICAN JOURNAL OF REPRODUCTIVE IMMUNOLOGY, 2000, 44 (01) : 9 - 15
  • [38] Vascular Endothelial-Cadherin Stabilizes at Cell-Cell Junctions by Anchoring to Circumferential Actin Bundles through α- and β-Catenins in Cyclic AMP-Epac-Rap1 Signal-activated Endothelial Cells
    Noda, Kazuomi
    Zhang, Jianghui
    Fukuhara, Shigetomo
    Kunimoto, Satoshi
    Yoshimura, Michihiro
    Mochizuki, Naoki
    MOLECULAR BIOLOGY OF THE CELL, 2010, 21 (04) : 584 - 596
  • [39] Fluid Shear Stress Induces Endothelial Cell Injury via Protein Kinase C Alpha-Mediated Repression of p120-Catenin and Vascular Endothelial Cadherin In Vitro
    Zhao, Ye-Yu
    Huang, Shao-Xin
    Hao, Zheng
    Zhu, Hua-Xin
    Xing, Ze-Long
    Li, Mei-Hua
    WORLD NEUROSURGERY, 2020, 136 : E469 - E475
  • [40] Transforming Growth Factor-β1 Inhibits Trophoblast Cell Invasion by Inducing Snail-mediated Down-regulation of Vascular Endothelial-cadherin Protein
    Cheng, Jung-Chien
    Chang, Hsun-Ming
    Leung, Peter C. K.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2013, 288 (46) : 33181 - 33192