血管平滑肌
钙化
运行x2
转录因子
细胞生物学
心肌细胞
内科学
化学
解剖
内分泌学
生物
医学
生物化学
平滑肌
基因
作者
M.C. McNeill,Frederic Li Mow Chee,Reza Ebrahimighaei,Graciela B. Sala‐Newby,Andrew C. Newby,Tom Hathway,Anilkumar Sankanahalli Annaiah,Suresh K. Joseph,Matteo Giovanni Carrabba,Mark Bond
标识
DOI:10.1016/j.yjmcc.2023.12.005
摘要
Abstract
Background
Vascular calcification (VC) is a prevalent independent risk factor for adverse cardiovascular events and is associated with diabetes, hypertension, chronic kidney disease, and atherosclerosis. However, the mechanisms regulating the osteogenic differentiation of vascular smooth muscle cells (VSMC) are not fully understood. Methods
Using hydrogels of tuneable stiffness and lysyl oxidase-mediated stiffening of human saphenous vein ex vivo, we investigated the role of substrate stiffness in the regulation of VSMC calcification. Results
We demonstrate that increased substrate stiffness enhances VSMC osteogenic differentiation and VSMC calcification. We show that the effects of substrate stiffness are mediated via a reduction in the level of actin monomer within the nucleus. We show that in cells interacting with soft substrate, elevated levels of nuclear actin monomer repress osteogenic differentiation and calcification by repressing YAP-mediated activation of both TEA Domain transcription factor (TEAD) and RUNX Family Transcription factor 2 (RUNX2). Conclusion
This work highlights for the first time the role of nuclear actin in mediating substrate stiffness-dependent VSMC calcification and the dual role of YAP-TEAD and YAP-RUNX2 transcriptional complexes.
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