TWIST1 drives endothelial-to-mesenchymal-transition to stabilize atherosclerotic plaques
Abstract
Abstract Rupture of unstable atherosclerotic plaques is a major cause of mortality. Endothelial-to-mesenchymal transition associates with advanced atherosclerotic plaques and contributes to plaque progression. We examined the role of Twist1 , a transcription factor that drives endothelial-to-mesenchymal transition, in plaque progression by inducible deletion from endothelial cells in hypercholesterolemic mice ( Twist1 ECKO Apo -/- ). Single-cell RNA sequencing coupled to endothelial cell-tracking reveals that Twist1 promotes endothelial-to-mesenchymal transition in advanced atherosclerotic plaques. Histological analyses demonstrate that endothelial Twist1 promotes plaque growth and hallmarks of plaque stability (collagen, ACTA2-positive cells) and reduces features of instability (necrosis, macrophage accumulation). Analysis of cultured human aortic endothelial cells shows that TWIST1 contributes to endothelial-to-mesenchymal transition by promoting migration and proliferation through the transcriptional coactivator PELP1. Additionally, TWIST1 promotes endothelial cell proliferation via AEBP1-dependent upregulation of COL4A1. These findings challenge the prevailing view that endothelial-to-mesenchymal transition uniquely destabilizes plaques, by suggesting that TWIST1-driven endothelial-to-mesenchymal transition can promote plaque stability, offering new insights into atherosclerosis pathophysiology and therapeutic potential.
Article Details
Authors (19)
Blanca Tardajos Ayllon
Mannekomba Diagbouga
Ankita Das
Universität Münster
Siyu Tian
School of Materials Science and Engineering, Hunan Provincial Key Laboratory of Electronic Packaging and Advanced Functional Materials
Andreas Edsfeldt
Joanna Kalucka
Jovana Serbanovic-Canic
Emily Chambers
Jiangming Sun
Chrysostomi Gialeli
Mark Dunning
Sheila E. Francis
Xiuying Li
Akiko Mammoto
Michael Simons
Helle F. Jørgensen
Isabel Goncalves
Suowen Xu
Paul C. Evans