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首页> 外文期刊>American Journal of Physiology >Sinusoidal length oscillation- and receptor-mediated mRNA expression of myosin isoforms and alpha-SM actin in airway smooth muscle.
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Sinusoidal length oscillation- and receptor-mediated mRNA expression of myosin isoforms and alpha-SM actin in airway smooth muscle.

机译:气道平滑肌中肌球蛋白同工型和α-SM肌动蛋白的正弦长度振荡和受体介导的mRNA表达。

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We tested the hypothesis that sinusoidal length oscillation and receptor activation interactively regulate the abundance of mRNA encoding alpha-smooth muscle (alpha-SM) actin and myosin isoforms in intact bovine tracheal smooth muscle. We found that sinusoidal length oscillation significantly downregulated abundance of mRNA encoding alpha-SM actin mRNA in unstimulated tissues but not in histamine- and carbachol-activated tissues. This observation suggests antagonistic interactions between mechanical stretch and receptor-mediated signal transduction in regulating the abundance of mRNA encoding alpha-SM actin in intact airway smooth muscle. This pattern of antagonistic interaction was also observed in cholinergic receptor activation experiments. Whereas carbachol significantly upregulated myosin heavy chain SMA isoform expression in muscle strips held at slack length, carbachol did not significantly alter SMA expression in muscle strips at sinusoidal length oscillation. Carbachol also significantly upregulated GAPDH expression in bovine tracheal smooth muscle. However, unlike SMA expression, upregulation of GAPDH expression mediated by cholinergic receptor activation appeared to be insensitive to the mechanical state of airway smooth muscle. Unlike carbachol, histamine did not significantly alter the expression of GAPDH, myosin heavy chain SMA and SMB, myosin light chain LC17a and LC17b, and alpha-SM actin in bovine tracheal smooth muscle. U0126 (10 muM) completely inhibited carbachol-induced ERK1/2 MAPK phosphorylation but did not significantly affect carbachol-induced upregulation of GAPDH and SMA expression, suggesting that the ERK1/2 MAPK pathway was not the underlying mechanism. A potential implication of these findings is that periodic stretching of airways during respiratory cycles may modulate mRNA expression by receptor agonists in airway smooth muscle cells in vivo.
机译:我们测试了假说,正弦波长度振荡和受体激活相互作用调节完整的牛气管平滑肌中编码α-平滑肌(α-SM)肌动蛋白和肌球蛋白同工型的mRNA的丰度。我们发现正弦波长度振荡在未刺激的组织中显着下调了编码α-SM肌动蛋白mRNA的mRNA的丰度,但在组胺和卡巴胆碱激活的组织中却没有。该观察结果表明机械拉伸和受体介导的信号转导之间的拮抗相互作用调节了完整气道平滑肌中编码α-SM肌动蛋白的mRNA的丰度。在胆碱能受体激活实验中也观察到这种拮抗相互作用的模式。卡巴胆碱显着上调了保持松弛长度的肌条中肌球蛋白重链SMA亚型的表达,而卡巴胆碱在正弦波长度振荡时并未显着改变肌条中SMA的表达。卡巴胆碱还显着上调了牛气管平滑肌中GAPDH的表达。但是,与SMA表达不同,胆碱能受体激活介导的GAPDH表达上调似乎对气道平滑肌的机械状态不敏感。与卡巴胆碱不同,组胺不会显着改变牛气管平滑肌中GAPDH,肌球蛋白重链SMA和SMB,肌球蛋白轻链LC17a和LC17b以及α-SM肌动蛋白的表达。 U0126(10μM)完全抑制了卡巴胆碱诱导的ERK1 / 2 MAPK磷酸化,但并未显着影响卡巴胆碱诱导的GAPDH和SMA表达的上调,这表明ERK1 / 2 MAPK途径不是其潜在机制。这些发现的潜在含义是,呼吸循环中气道的周期性拉伸可能通过受体激动剂调节体内气道平滑肌细胞中的mRNA表达。

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