钙化
异位钙化
细胞外
细胞生物学
小泡
生物
骨桥蛋白
磷酸化
细胞外基质
血管平滑肌
生物化学
病理
内分泌学
医学
膜
平滑肌
作者
Claudia Goettsch,Joshua D. Hutcheson,Masanori Aikawa,Hiroshi Iwata,Tan Pham,Anders Nykjaer,Mads Kjølby,Maximillian A. Rogers,Thomas Michel,Manabu Shibasaki,Sumihiko Hagita,Rafael Kramann,Daniel J. Rader,Peter Libby,Sasha A Singh,Elena Aikawa
摘要
Vascular calcification is a common feature of major cardiovascular diseases. Extracellular vesicles participate in the formation of microcalcifications that are implicated in atherosclerotic plaque rupture; however, the mechanisms that regulate formation of calcifying extracellular vesicles remain obscure. Here, we have demonstrated that sortilin is a key regulator of smooth muscle cell (SMC) calcification via its recruitment to extracellular vesicles. Sortilin localized to calcifying vessels in human and mouse atheromata and participated in formation of microcalcifications in SMC culture. Sortilin regulated the loading of the calcification protein tissue nonspecific alkaline phosphatase (TNAP) into extracellular vesicles, thereby conferring its calcification potential. Furthermore, SMC calcification required Rab11-dependent trafficking and FAM20C/casein kinase 2–dependent C-terminal phosphorylation of sortilin. In a murine model, Sort1-deficiency reduced arterial calcification but did not affect bone mineralization. Additionally, transfer of sortilin-deficient BM cells to irradiated atherosclerotic mice did not affect vascular calcification, indicating a primary role of SMC-derived sortilin. Together, the results of this study identify sortilin phosphorylation as a potential therapeutic target for ectopic calcification/microcalcification and may clarify the mechanism that underlies the genetic association between the SORT1 gene locus and coronary artery calcification.
科研通智能强力驱动
Strongly Powered by AbleSci AI