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Suppression of nephrin expression by TNF-α via interfering with the cAMP-retinoic acid receptor pathway

机译:通过干扰营养视黄酸受体途径的TNF-α抑制肾肾上腺素表达

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摘要

Nephrin, a crucial component of the slit diaphragm, is downregulated in proteinuric glomerular diseases including glomerulonephritis. We previously reported that 1) expression of nephrin in cultured podocytes is reinforced by retinoic acid (RA) and 1,25-dihydroxyvitamin D3, 2) these effects are mediated by retinoic acid receptor (RAR) and vitamin D receptor (VDR), and 3) basal and inducible expression of nephrin is downregulated by TNF-α. In the present investigation, we identified that TNF-α selectively represses activity of RAR but not VDR. To elucidate mechanisms underlying this observation, we tested involvement of downstream targets for TNF-α: nuclear factor-κB (NF-κB), mitogen-activated protein (MAP) kinases, phosphatidylinositol 3-kinase (PI3K)-Akt, and cAMP-protein kinase A (PKA). TNF-α caused activation of NF-κB, MAP kinases, and PI3K-Akt in podocytes, whereas blockade of these molecules did not affect inhibition of RAR by TNF-α. In contrast, TNF-α depressed activity of cAMP-PKA, and blockade of PKA inhibited basal and RA-induced activation of RAR. Furthermore, activity of RAR was significantly upregulated by cAMP, and the suppressive effect of TNF-α on RAR was reversed by cAMP-elevating agents. These results suggest that 1) expression of nephrin in podocytes is regulated by the cAMP-RAR pathway and 2) suppression of nephrin by TNF-α is caused, at least in part, through selective inhibition of this pathway.
机译:Nephrin是狭缝膜片的关键组分,在包括肾小球肾炎的蛋白质肾小球疾病中下调。我们之前报道的是,通过视黄酸(Ra)和1,25-二羟基维胺D3,2)通过视黄酸受体(RAR)和维生素D受体(VDR)介导的培养诱导致植物中肾的表达培养的诱导孔细胞中的表达。 3)通过TNF-α下调Nephrin的基础和诱导型表达。在本研究中,我们发现TNF-α选择性地抑制RAR的活性但不是VDR。为了阐明这种观察结果的机制,我们测试了TNF-α的下游靶标:核因子-κB(NF-κB),丝裂原蛋白(MAP)激酶,磷脂酰肌醇3-激酶(PI3K)-AKT和CAMP-蛋白激酶A(PKA)。 TNF-α在足细胞中引起NF-κB,地图激酶和Pi3k-akt的激活,而阻断这些分子不会影响RARα的抑制TNF-α。相反,TNF-α抑制露点的抑制活性,并阻断PKA抑制基础和RA诱导的RAR活化。此外,RAR的活性通过阵营显着上调,TNF-α对RAR的抑制作用通过阵营升降剂反转。这些结果表明,1)肾细胞中肾的表达由CAMP-RAR途径调节,2)通过TNF-α抑制肾的抑制,至少部分地通过选择性抑制该途径引起。

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