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首页> 外文期刊>American Journal of Physiology >Interferons modulate mitogen-induced protein synthesis in airway smooth muscle.
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Interferons modulate mitogen-induced protein synthesis in airway smooth muscle.

机译:干扰素调节气道平滑肌中的丝粉膜诱导的蛋白质合成。

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Severe asthma is characterized by increased airway smooth muscle (ASM) mass due, in part, to ASM cell growth and contractile protein expression associated with increased protein synthesis. Little is known regarding the combined effects of mitogens and interferons on ASM cytosolic protein synthesis. We demonstrate that human ASM mitogens including PDGF, EGF, and thrombin stimulate protein synthesis. Surprisingly, pleiotropic cytokines IFN-beta and IFN-gamma, which inhibit ASM proliferation, also increased cytosolic protein content in ASM cells. Thus IFN-beta alone significantly increased protein synthesis by 1.62 +/- 0.09-fold that was further enhanced by EGF to 2.52 +/- 0.17-fold. IFN-gamma alone also stimulated protein synthesis by 1.91 +/- 0.15-fold; treatment of cells with PDGF, EGF, and thrombin in the presence of IFN-gamma stimulated protein synthesis by 2.24 +/- 0.3-, 1.25 +/- 0.17-, and 2.67 +/- 0.34-fold, respectively, compared with growth factors alone. The mammalian target of rapamycin (mTOR)/S6 kinase 1 (S6K1) inhibition with rapamycin inhibited IFN- and EGF-induced protein synthesis, suggesting that IFN-induced protein synthesis is modulated by mTOR/S6K1 activation. Furthermore, overexpression of tumor suppressor protein tuberous sclerosis complex 2 (TSC2), which is an upstream negative regulator of mTOR/S6K1 signaling, also inhibited mitogen-induced protein synthesis in ASM cells. IFN-beta and IFN-gamma stimulated miR143/145 microRNA expression and increased SM alpha-actin accumulation but had little effect on ASM cell size. In contrast, EGF increased ASM cell size but had little effect on miR143/145 expression. Our data demonstrate that both IFNs and mitogens stimulate protein synthesis but have differential effects on cell size and contractile protein expression and suggest that combined effects of IFNs and mitogens may contribute to ASM cell growth, contractile protein expression, and ASM remodeling in asthma.
机译:严重的哮喘的特征在于气道平滑肌(ASM)质量增加,部分原因是与蛋白质合成增加相关的ASM细胞生长和收缩蛋白表达。关于丝季和干扰素对ASM细胞溶质蛋白质合成的综合作用很少。我们证明了人体ASM丝率,包括PDGF,EGF和凝血酶刺激蛋白质合成。令人惊讶的是,抑制ASM增殖的脂肪术细胞因子IFN-β和IFN-γ也增加了ASM细胞中的细胞溶质蛋白质含量。因此,IFN-β仅通过EGF进一步增强1.62 +/- 0.09倍的蛋白质合成显着提高1.62 +/- 0.09倍。 IFN-Gamma单独刺激蛋白质合成1.91 +/- 0.15倍;在IFN-Gamma刺激蛋白合成的情况下,分别在224 +/- 0.3-,1.25 +/- 0.3-,2.67 +/- 0.34倍的情况下处理具有PDGF,EGF和凝血酶的细胞分别与生长因子相比独自的。雷帕霉素(mTOR)/ S6激酶1(S6K1)抑制雷帕霉素的哺乳动物靶标抑制IFN和EGF诱导的蛋白质合成,表明IFN诱导的蛋白质合成由MTOR / S6K1活化调节。此外,肿瘤抑制蛋白结核硬化综合体2(TSC2)的过表达,其是MTOR / S6K1信号传导的上游负调节剂,也抑制了ASM细胞中的丝裂原诱导的蛋白质合成。 IFN-β和IFN-Gamma刺激MiR143 / 145 microRNA表达和增加的SMα-肌动蛋白积累,但对ASM细胞尺寸几乎没有影响。相反,EGF增加了ASM细胞尺寸,但对miR143 / 145表达没有影响。我们的数据表明,IFNS和丝率刺激蛋白质合成,但对细胞大小和收缩蛋白表达具有差异影响,并表明IFNS和丝率的组合效应可能有助于ASM细胞生长,收缩蛋白表达和ASM在哮喘中重塑。

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