PKM2 regulates endothelial cell junction dynamics and angiogenesis via ATP production

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作者
Jesús Gómez-Escudero
Cristina Clemente
Diego García-Weber
Rebeca Acín-Pérez
Jaime Millán
José A. Enríquez
Katie Bentley
Peter Carmeliet
Alicia G. Arroyo
机构
[1] Vascular Pathophysiology,Tumour Biology Department, Barts Cancer Institute, John´s Vane Centre
[2] Centro Nacional de Investigaciones Cardiovasculares (CNIC). Melchor Fernández Almagro 3,Centro de Biología Molecular Severo Ochoa, Consejo Superior de Investigaciones Científicas (CSIC)
[3] Queen Mary´s University of London. Charterhouse Sq,Cellular Adaptive Behaviour Laboratory, Rudbeck Laboratories, Department of Immunology, Genetics and Pathology
[4] Centro de Investigaciones Biológicas (CIB-CSIC). Ramiro de Maeztu 9,Laboratory of Angiogenesis and Vascular Metabolism, Center for Cancer Biology
[5] Universidad Autónoma de Madrid,Laboratory of Angiogenesis and Vascular Metabolism, Center for Cancer Biology, Department of Oncology
[6] Myocardial Pathology Areas,State Key Laboratory of Ophthalmology, Zhongsan Ophthalmic Center
[7] Centro Nacional de Investigaciones Cardiovasculares (CNIC). Melchor Fernández Almagro 3,undefined
[8] Computational Biology Laboratory,undefined
[9] Beth Israel Deaconess Medical Center,undefined
[10] Harvard Medical School,undefined
[11] Uppsala University,undefined
[12] Vlaams Instituut voor Biotechnologie (VIB),undefined
[13] University of Leuven,undefined
[14] Sun Yat-Sen University,undefined
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摘要
Angiogenesis, the formation of new blood vessels from pre-existing ones, occurs in pathophysiological contexts such as wound healing, cancer, and chronic inflammatory disease. During sprouting angiogenesis, endothelial tip and stalk cells coordinately remodel their cell-cell junctions to allow collective migration and extension of the sprout while maintaining barrier integrity. All these processes require energy, and the predominant ATP generation route in endothelial cells is glycolysis. However, it remains unclear how ATP reaches the plasma membrane and intercellular junctions. In this study, we demonstrate that the glycolytic enzyme pyruvate kinase 2 (PKM2) is required for sprouting angiogenesis in vitro and in vivo through the regulation of endothelial cell-junction dynamics and collective migration. We show that PKM2-silencing decreases ATP required for proper VE-cadherin internalization/traffic at endothelial cell-cell junctions. Our study provides fresh insight into the role of ATP subcellular compartmentalization in endothelial cells during angiogenesis. Since manipulation of EC glycolysis constitutes a potential therapeutic intervention route, particularly in tumors and chronic inflammatory disease, these findings may help to refine the targeting of endothelial glycolytic activity in disease.
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