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首页> 外文期刊>Life sciences >Downregulation of integrin-linked kinase mRNA expression by nitric oxide in rat glomerular mesangial cells.
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Downregulation of integrin-linked kinase mRNA expression by nitric oxide in rat glomerular mesangial cells.

机译:一氧化氮在大鼠肾小球系膜细胞中下调整合素相关激酶mRNA的表达。

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摘要

Inflammatory glomerular diseases are accompanied by changes in the expression patterns of growth factors, mediators and matrix-associated proteins in mesangial cells and by the production of nitric oxide via the cytokine-inducible form of the nitric oxide synthase. Nitric oxide has been shown to act potently on gene transcription. To identify genes that are differentially expressed by endogenously produced nitric oxide, we forced rat mesangial cells to produce high amounts of nitric oxide by exposure to inflammatory cytokines and compared the mRNA expression patterns of cytokine-stimulated mesangial cells with cells that were additionally treated with the nitric oxide synthase inhibitor L-NMMA to block endogenous NO synthesis. We used a modification of a low stringency RT-PCR approach designated as RNA arbitrarily-primed polymerase chain reaction (RAP-PCR). In this way, we identified among others the integrin-linked kinase (ILK) as an NO-regulated gene. The NO-mediated changes in the mRNA and protein expression patterns of ILK were compared to that of "secreted protein acidic and rich in cystein" (SPARC), a gene that was identified as NO-regulated in the same set of experiments (Walpen et al., J. Am. Soc. Nephrol., 11, 468-476). ILK and SPARC mRNA levels by were downregulated by cytokines via endogenously produced nitric oxide in a comparable manner as verified by Northern blot analysis. In contrast, cytokine- induced NO production or administration of exogenous NO-donors strongly reduced SPARC protein levels without altering ILK protein content in mesangial cells over a period up to 72 hours. Blocking de novo protein synthesis showed a short halflife of SPARC (< 2 hours) whereas ILK-protein was stable over a period of 7 hours, indicating that NO-mediated reduction of ILK mRNA levels does not influence protein content of ILK in mesangial cells under the time limitations given under cell culture conditions. However, a role for cytokines/NO in ILK-long-term regulation in chronic inflammatory diseases that may influence phenotypic responses such as apoptosis or cell proliferation remains to be elucidated.
机译:炎症性肾小球疾病伴随着肾小球膜细胞中生长因子,介体和基质相关蛋白表达模式的变化,以及通过细胞因子诱导型一氧化氮合酶产生一氧化氮。一氧化氮已经显示出对基因转录的有效作用。为了鉴定内源性一氧化氮差异表达的基因,我们强迫大鼠肾小球系膜细胞通过暴露于炎性细胞因子来产生大量一氧化氮,并将细胞因子刺激的系膜细胞的mRNA表达模式与经进一步处理的细胞进行比较。一氧化氮合酶抑制剂L-NMMA阻止内源性NO的合成。我们使用了一种低严格度RT-PCR方法的改进方法,称为RNA任意引发的聚合酶链反应(RAP-PCR)。通过这种方式,我们确定了整联蛋白连接的激酶(ILK)作为NO调控的基因。将NOK介导的ILK mRNA和蛋白质表达模式的变化与“酸性和富含半胱氨酸的分泌蛋白”(SPARC)进行了比较,该基因在同一组实验中被确定为NO调控的基因(Walpen等等,J.Am.Soc.Nephrol。,11,468-476)。 ILK和SPARC mRNA水平通过细胞内因子通过内源性产生的一氧化氮下调的程度与RNA印迹分析所证实的相当。相反,在长达72小时的时间内,细胞因子诱导的NO产生或外源NO供体的施用强烈降低了SPARC蛋白水平,而没有改变系膜细胞中ILK蛋白的含量。阻断从头合成蛋白显示SPARC的半衰期短(<2小时),而ILK蛋白在7小时内稳定,这表明NO介导的ILK mRNA水平降低不会影响肾小球系膜细胞中ILK的蛋白质含量细胞培养条件下给出的时间限制。然而,仍需要阐明细胞因子/ NO在可能影响表型反应(例如细胞凋亡或细胞增殖)的慢性炎症疾病中ILK长期调节中的作用。

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