Long non-coding RNA LASSIE regulates shear stress sensing and endothelial barrier function

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作者
Laura Stanicek
Noelia Lozano-Vidal
Diewertje Ilse Bink
Aukie Hooglugt
Wenjie Yao
Ilka Wittig
Jos van Rijssel
Jaap Diederik van Buul
Anke van Bergen
Alina Klems
Anne Sophie Ramms
Ferdinand Le Noble
Patrick Hofmann
Robert Szulcek
ShengPeng Wang
Stefan Offermanns
Meryem Seda Ercanoglu
Hyouk-Bum Kwon
Didier Stainier
Stephan Huveneers
Leo Kurian
Stefanie Dimmeler
Reinier Abraham Boon
机构
[1] Amsterdam UMC,Dept. of Physiology, Amsterdam Cardiovascular Sciences (ACS)
[2] VU University Medical Center,Institute of Cardiovascular Regeneration, Center of Molecular Medicine
[3] Goethe-University,Department of Medical Biochemistry, Vascular Microenvironment and Integrity, Amsterdam Cardiovascular Sciences (ACS)
[4] Amsterdam University Medical Center,Institute for Neurophysiology, Center for Molecular Medicine (CMMC)
[5] University of Cologne,Functional Proteomics, SFB 815 Core Unit, Faculty of Medicine
[6] Goethe-University,Molecular Cell Biology Laboratory, Department of Plasma Proteins, Sanquin Research and Landsteiner Laboratory, Academic Medical Center Amsterdam
[7] University of Amsterdam,Department of Cell and Developmental Biology
[8] Institute of Zoology (ZOO),Dept. of Pulmonary Diseases, Amsterdam Cardiovascular Sciences (ACS)
[9] Karlsruhe Institute of Technology (KIT),Department of Pharmacology
[10] German Center for Cardiovascular Research DZHK,Institute of Virology
[11] Partner Site Frankfurt Rhine-Main,Center for Molecular Medicine Cologne (CMMC)
[12] Amsterdam UMC,Department of Developmental Genetics
[13] VU University Medical Center,undefined
[14] Max Planck Institute for Heart and Lung Research,undefined
[15] University Hospital Cologne,undefined
[16] University of Cologne,undefined
[17] Max Planck Institute for Heart and Lung Research,undefined
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摘要
Blood vessels are constantly exposed to shear stress, a biomechanical force generated by blood flow. Normal shear stress sensing and barrier function are crucial for vascular homeostasis and are controlled by adherens junctions (AJs). Here we show that AJs are stabilized by the shear stress-induced long non-coding RNA LASSIE (linc00520). Silencing of LASSIE in endothelial cells impairs cell survival, cell-cell contacts and cell alignment in the direction of flow. LASSIE associates with junction proteins (e.g. PECAM-1) and the intermediate filament protein nestin, as identified by RNA affinity purification. The AJs component VE-cadherin showed decreased stabilization, due to reduced interaction with nestin and the microtubule cytoskeleton in the absence of LASSIE. This study identifies LASSIE as link between nestin and VE-cadherin, and describes nestin as crucial component in the endothelial response to shear stress. Furthermore, this study indicates that LASSIE regulates barrier function by connecting AJs to the cytoskeleton.
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