Qi Ying-Xin, Qu Ming-Juan, Long Ding-Kun, Liu Bo, Yao Qing-Ping, Chien Shu, Jiang Zong-Lai
Institute of Mechanobiology and Medical Engineering, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, PO Box 888, 800 Dongchuan Road, Minhang, Shanghai 200240, P.R. China.
Cardiovasc Res. 2008 Oct 1;80(1):114-22. doi: 10.1093/cvr/cvn158. Epub 2008 Jun 7.
Low shear stress (LSS) plays a significant role in vascular remodelling during atherogenesis, which involves migration, proliferation, and apoptosis of vascular smooth muscle cells (VSMCs). The aim of the present study is to elucidate the molecular mechanisms by which LSS induces vascular remodelling.
Using proteomic techniques, two-dimensional electrophoresis, and mass spectrometry, the protein profiles of Sprague-Dawley rat aorta cultured under two levels of shear stress, 5 and 15 dyn/cm(2), were determined. The results showed a significantly lower expression of protein-Rho-GDP dissociation inhibitor alpha (Rho-GDIalpha) in the LSS vessels. Rho-GDIalpha signalling mechanisms and effects on VSMC migration and apoptosis were then studied to understand the role of Rho-GDIalpha in the LSS-induced vascular remodelling. A decrease in Rho-GDIalpha expression by using target small interfering RNA (siRNA) transfection caused increases in the phosphorylation of Rac1 and Akt and enhancements of VSMC migration and apoptosis. Treatment with the PI3K/Akt-specific inhibitor wortmannin significantly decreased Akt phosphorylation, but had no effect on Rho-GDIalpha expression and Rac1 phosphorylation. Wortmannin was able to reverse the Rho-GDIalpha siRNA-induced enhancement of VSMC migration, but not VSMC apoptosis.
The results indicate that the LSS-induced VSMC migration and apoptosis are mediated by a downregulation of Rho-GDIalpha. The effect of Rho-GDIalpha on VSMC migration is mediated by the PI3K/Akt pathway, but its effect on VSMC apoptosis is not.
低剪切应力(LSS)在动脉粥样硬化形成过程中的血管重塑中起重要作用,这涉及血管平滑肌细胞(VSMC)的迁移、增殖和凋亡。本研究的目的是阐明LSS诱导血管重塑的分子机制。
采用蛋白质组学技术、二维电泳和质谱法,测定了在5和15达因/平方厘米两种剪切应力水平下培养的Sprague-Dawley大鼠主动脉的蛋白质谱。结果显示,LSS血管中蛋白质-Rho-GDP解离抑制剂α(Rho-GDIα)的表达显著降低。随后研究了Rho-GDIα信号机制及其对VSMC迁移和凋亡的影响,以了解Rho-GDIα在LSS诱导的血管重塑中的作用。使用靶向小干扰RNA(siRNA)转染降低Rho-GDIα表达导致Rac1和Akt磷酸化增加以及VSMC迁移和凋亡增强。用PI3K/Akt特异性抑制剂渥曼青霉素处理显著降低了Akt磷酸化,但对Rho-GDIα表达和Rac1磷酸化没有影响。渥曼青霉素能够逆转Rho-GDIα siRNA诱导的VSMC迁移增强,但不能逆转VSMC凋亡。
结果表明,LSS诱导的VSMC迁移和凋亡是由Rho-GDIα下调介导的。Rho-GDIα对VSMC迁移的影响是由PI3K/Akt途径介导的,但其对VSMC凋亡的影响不是。