Department of Bioengineering and Institute of Engineering in Medicine, University of California, San Diego, La Jolla, CA 92093, USA.
Proc Natl Acad Sci U S A. 2010 Feb 16;107(7):3234-9. doi: 10.1073/pnas.0914825107. Epub 2010 Jan 27.
MicroRNAs (miRs) can regulate many cellular functions, but their roles in regulating responses of vascular endothelial cells (ECs) to mechanical stimuli remain unexplored. We hypothesize that the physiological responses of ECs are regulated by not only mRNA and protein signaling networks, but also expression of the corresponding miRs. EC growth arrest induced by pulsatile shear (PS) flow is an important feature for flow regulation of ECs. miR profiling showed that 21 miRs are differentially expressed (8 up- and 13 downregulated) in response to 24-h PS as compared to static condition (ST). The mRNA expression profile indicates EC growth arrest under 24-h PS. Analysis of differentially expressed miRs yielded 68 predicted mRNA targets that overlapped with results of microarray mRNA profiling. Functional analysis of miR profile indicates that the cell cycle network is highly regulated. The upregulation of miR-23b and miR-27b was found to correlate with the PS-induced EC growth arrest. Inhibition of miR-23b using antagomir-23b oligonucleotide (AM23b) reversed the PS-induced E2F1 reduction and retinoblastoma (Rb) hypophosphorylation and attenuated the PS-induced G1/G0 arrest. Antagomir AM27b regulated E2F1 expression, but did not affect Rb and growth arrest. Our findings indicate that PS suppresses EC proliferation through the regulation of miR-23b and provide insights into the role of miRs in mechanotransduction.
微小 RNA(miRs)可以调节许多细胞功能,但它们在调节血管内皮细胞(ECs)对机械刺激的反应中的作用仍未被探索。我们假设 ECs 的生理反应不仅受到 mRNA 和蛋白质信号网络的调节,还受到相应的 miRs 的表达调节。脉冲剪切(PS)流诱导的 EC 生长停滞是 ECs 流动调节的一个重要特征。miR 谱分析显示,与静态条件(ST)相比,21 种 miR 在 24 小时 PS 作用下呈现出差异表达(8 种上调和 13 种下调)。mRNA 表达谱显示 EC 在 24 小时 PS 下生长停滞。差异表达 miR 的分析产生了 68 个预测的 mRNA 靶标,与微阵列 mRNA 谱分析的结果重叠。miR 谱的功能分析表明细胞周期网络受到高度调节。发现 miR-23b 和 miR-27b 的上调与 PS 诱导的 EC 生长停滞相关。使用 miR-23b 拮抗剂(AM23b)抑制 miR-23b 可逆转 PS 诱导的 E2F1 减少和视网膜母细胞瘤(Rb)低磷酸化,并减弱 PS 诱导的 G1/G0 期停滞。AM27b 拮抗剂调节 E2F1 的表达,但不影响 Rb 和生长停滞。我们的研究结果表明 PS 通过调节 miR-23b 抑制 EC 增殖,并为 miR 在机械转导中的作用提供了新的见解。