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腺病毒介导 miRNA 嵌入 siRNA 沉默 ADAM17 揭示血管平滑肌细胞中血管紧张素 II 的重要信号转导作用。

ADAM17 silencing by adenovirus encoding miRNA-embedded siRNA revealed essential signal transduction by angiotensin II in vascular smooth muscle cells.

机构信息

Cardiovascular Research Center and Department of Physiology, Temple University School of Medicine, Philadelphia, PA 19140, USA.

出版信息

J Mol Cell Cardiol. 2013 Sep;62:1-7. doi: 10.1016/j.yjmcc.2013.05.005. Epub 2013 May 17.

Abstract

Small interfering RNA (siRNA) mediated gene silencing has been utilized as a powerful molecular tool to study the functional significance of a specific protein. However, due to transient gene silencing and insufficient transfection efficiency, this approach can be problematic in primary cell culture such as vascular smooth muscle cells. To overcome this weakness, we utilized an adenoviral-encoded microRNA (miRNA)-embedded siRNA "mi/siRNA"-based RNA interference. Here, we report the results of silencing a disintegrin and metalloprotease 17 (ADAM17) in cultured rat vascular smooth muscle cells and its functional mechanism in angiotensin II signal transduction. 3 distinct mi/siRNA sequences targeting rat ADAM17 were inserted into pAd/CMV/V5-DEST and adenoviral solutions were obtained. Nearly 90% silencing of ADAM17 was achieved when vascular smooth muscle cells were infected with 100 multiplicity of infection of each ADAM17 mi/siRNA encoding adenovirus for 3days. mi/siRNA-ADAM17 but not mi/siRNA-control inhibited angiotensin II-induced epidermal growth factor receptor trans-activation and subsequent extracellular signal-regulated kinase activation and hypertrophic response in the cells. mi/siRNA-ADAM17 also inhibited angiotensin II-induced heparin-binding epidermal growth factor-like factor shedding. This inhibition was rescued with co-infection of adenovirus encoding mouse ADAM17 but not by its cytosolic domain deletion mutant or cytosolic Y702F mutant. As expected, angiotensin II induced tyrosine phosphorylation of ADAM17 in the cells. In conclusion, ADAM17 activation via its tyrosine phosphorylation contributes to heparin-binding epidermal growth factor-like factor shedding and subsequent growth promoting signals induced by angiotensin II in vascular smooth muscle cells. An artificial mi/siRNA-based adenoviral approach appears to be a reliable gene-silencing strategy for signal transduction research in primary cultured vascular cells.

摘要

小干扰 RNA(siRNA)介导的基因沉默已被用作研究特定蛋白质功能意义的强大分子工具。然而,由于瞬时基因沉默和转染效率不足,这种方法在原代细胞培养中(如血管平滑肌细胞)可能存在问题。为了克服这一弱点,我们利用腺病毒编码的 microRNA(miRNA)嵌入的 siRNA“mi/siRNA”基于 RNA 干扰。在这里,我们报告了在培养的大鼠血管平滑肌细胞中沉默解整合素和金属蛋白酶 17(ADAM17)及其在血管紧张素 II 信号转导中的功能机制的结果。3 种不同的针对大鼠 ADAM17 的 mi/siRNA 序列插入到 pAd/CMV/V5-DEST 中,并获得了腺病毒溶液。当血管平滑肌细胞感染每个 ADAM17 mi/siRNA 编码腺病毒的 100 倍感染复数时,在 3 天内可以实现 ADAM17 的近 90%沉默。mi/siRNA-ADAM17 但不是 mi/siRNA-对照抑制了血管紧张素 II 诱导的表皮生长因子受体反式激活及其随后的细胞外信号调节激酶激活和细胞中的肥大反应。mi/siRNA-ADAM17 还抑制了血管紧张素 II 诱导的肝素结合表皮生长因子样因子脱落。这种抑制作用可以通过共感染编码小鼠 ADAM17 的腺病毒来挽救,但不能通过其胞质域缺失突变体或胞质 Y702F 突变体来挽救。正如预期的那样,血管紧张素 II 在细胞中诱导 ADAM17 的酪氨酸磷酸化。总之,ADAM17 的酪氨酸磷酸化激活有助于肝素结合表皮生长因子样因子脱落以及血管平滑肌细胞中血管紧张素 II 诱导的随后的促生长信号。人工的基于 mi/siRNA 的腺病毒方法似乎是一种可靠的基因沉默策略,用于原代培养的血管细胞中的信号转导研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4112/3735780/63d14319cc87/nihms-483068-f0001.jpg

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