Institute of Developmental Biology, School of Life Science, Shandong University, Ji-nan, China.
Acta Pharmacol Sin. 2012 Jan;33(1):57-65. doi: 10.1038/aps.2011.142. Epub 2011 Dec 5.
In vascular strips, the adjacent endothelial cells modulate the contraction of vascular smooth muscle cells (VSMCs) induced by sphingosylphosphorylcholine (SPC) through nitric oxide (NO). The aim of this study was to elucidate the mechanisms by which vascular endothelial cells (VECs) reduce the SPC-induced contraction of VSMCs in a co-culture system.
Human umbilical VECs and VSMCs were co-cultured. The VECs were transfected with integrin β4- or Fyn-specific siRNA. The areas of VSMCs that are involved in cell contractility were quantified using the Leica confocal software and collagen contractility assay. The production of NO in VECs was measured in the cell supernatants using NO Detection Kit. The levels of integrin β4 and Fyn in VECs and the levels of Rho kinase (ROCK) in VSMC were detected using immunofluorescence assays or Western blots.
Co-culture with VECs reduced the contraction of VSMCs induced by SPC (30 μmol/L). The down-regulation of integrin β4 or Fyn in VECs by the specific siRNA (20 nmol/L) was able to counteract the effects of VECs on the SPC-induced VSMC contractions. Furthermore, the integrin β4-specific siRNA (20 and 40 nmol/L) significantly reduced the level of Fyn protein and the production of NO in VECs, while increased the level of ROCK in VSMCs that had been stimulated by SPC.
The VECs reduced the SPC-induced contraction of VSMCs in the co-culture system through integrin β4 and Fyn proteins. In this process, NO may be the factor downstream of integrin β4 in VECs, while ROCK may be the key protein regulating the contraction of VSMCs.
在血管条带中,相邻的内皮细胞通过一氧化氮(NO)调节鞘氨醇磷酸胆碱(SPC)诱导的血管平滑肌细胞(VSMCs)收缩。本研究旨在阐明血管内皮细胞(VECs)在共培养系统中降低 SPC 诱导的 VSMC 收缩的机制。
共培养人脐静脉 VEC 和 VSMC。用整合素 β4 或 Fyn 特异性 siRNA 转染 VEC。使用 Leica 共聚焦软件和胶原蛋白收缩测定法量化参与细胞收缩性的 VSMC 区域。使用 NO 检测试剂盒测量 VEC 细胞上清液中的 NO 产生。使用免疫荧光测定法或 Western blot 检测 VEC 中的整合素 β4 和 Fyn 水平以及 VSMC 中的 Rho 激酶(ROCK)水平。
与 VEC 共培养可降低 SPC(30 μmol/L)诱导的 VSMC 收缩。特异性 siRNA(20 nmol/L)下调 VEC 中的整合素 β4 或 Fyn 能够抵消 VEC 对 SPC 诱导的 VSMC 收缩的影响。此外,整合素 β4 特异性 siRNA(20 和 40 nmol/L)显著降低了 VEC 中 Fyn 蛋白的水平和 NO 的产生,同时增加了 SPC 刺激的 VSMCs 中的 ROCK 水平。
VEC 通过整合素 β4 和 Fyn 蛋白降低了共培养系统中 SPC 诱导的 VSMC 收缩。在这个过程中,NO 可能是 VEC 中整合素 β4 的下游因子,而 ROCK 可能是调节 VSMC 收缩的关键蛋白。