검색 상세

PAR-1 is a novel mechano-sensor transducing laminar flow-mediated endothelial signaling

  • 주제(기타) Multidisciplinary Sciences
  • 설명문(일반) [Kim, Suji; Han, Jung-Hwa; Woo, Chang-Hoon] Yeungnam Univ, Dept Pharmacol, Coll Med, 317-1 Daemyung Dong, Daegu, South Korea; [Kim, Suji; Han, Jung-Hwa; Kim, Jae-Ryong; Woo, Chang-Hoon] Yeungnam Univ, Smart Ageing Convergence Res Ctr, Coll Med, 317-1 Daemyung Dong, Daegu, South Korea; [Nam, Dae-Hwan] Korea Res Inst Chem Technol, Korea Inst Toxicol, Predict Model Res Ctr, Daejeon, South Korea; [Kim, Geun-Young] Ctr Dis Control & Prevent, Jeju Natl Quarantine Stn, Jeju, South Korea; [Lim, Jae Hyang] Ewha Womans Univ, Dept Microbiol, Sch Med, 911-1 Mok Dong, Seoul, South Korea
  • 등재 SCIE, SCOPUS
  • 발행기관 NATURE PUBLISHING GROUP
  • 발행년도 2018
  • URI http://www.dcollection.net/handler/ewha/000000156534
  • 본문언어 영어
  • Published As http://dx.doi.org/10.1038/s41598-018-33222-3

초록/요약

Recent studies have indicated that protease-activated receptor-1 (PAR-1) is involved in cytoprotective and anti-inflammatory responses in endothelial cells (ECs). However, the role of PAR-1 in laminar flow-mediated atheroprotective responses remains unknown. Herein, we investigated whether PAR-1 regulates laminar flow-mediated mechanotransduction in ECs. Confocal analysis showed that PAR-1 was internalized into early endosomes in response to laminar flow. In addition, flow cytometry analysis showed that cell surface expression of PAR-1 was reduced by laminar flow, suggesting that PAR-1 was activated in response to laminar flow. Depletion of PAR-1 using human PAR-1 siRNA inhibited unidirectional laminar flow-mediated actin stress fiber formation and cellular alignment as well as atheroprotective gene expressions in HUVECs. Moreover, PAR-1 knockdown inhibited laminar flow-stimulated eNOS phosphorylation, and inhibited the phosphorylations of Src, AMPK, ERK5 and HDAC5. Furthermore, PAR-1 depletion inhibited laminar flow-mediated anti-inflammatory responses as demonstrated by reduced TNF alpha-induced VCAM-1 expression and by monocyte adhesion to HUVECs, and prevented laminar flow-mediated anti-apoptotic response. An investigation of the role of PAR-1 in vasomotor modulation using mouse aortic rings revealed that acetylcholine-induced vasorelaxation was diminished in PAR-1 deficient mice compared to littermate controls. Taken together, these findings suggest that PAR-1 be viewed as a novel pharmacologic target for the treatment of vascular diseases, including atherosclerosis.

more