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Activation of Bone Morphogenetic Protein 4 Signaling Leads to Glomerulosclerosis That Mimics Diabetic Nephropathy

机译:骨形态发生蛋白4信号的激活导致模仿糖尿病肾病的肾小球硬化。

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摘要

Diabetic nephropathy (DN) is the most common cause of chronic kidney disease. We have previously reported that Smad1 transcriptionally regulates the expression of extracellular matrix (ECM) proteins in DN. However, little is known about the regulatory mechanisms that induce and activate Smad1. Here, bone morphogenetic protein 4 (Bmp4) was found to up-regulate the expression of Smad1 in mesangial cells and subsequently to phosphorylate Smad1 downstream of the advanced glycation end product-receptor for advanced glycation end product signaling pathway. Moreover, Bmp4 utilized Alk3 and affected the activation of Smad1 and Col4 expressions in mesangial cells. In the diabetic mouse, Bmp4 was remarkably activated in the glomeruli, and the mesangial area was expanded. To elucidate the direct function of Bmp4 action in the kidneys, we generated transgenic mice inducible for the expression of Bmp4. Tamoxifen treatment dramatically induced the expression of Bmp4, especially in the glomeruli of the mice. Notably, in the nondiabetic condition, the mice exhibited not only an expansion of the mesangial area and thickening of the basement membrane but also remarkable albuminuria, which are consistent with the distinct glomerular injuries in DN. ECM protein overexpression and activation of Smad1 in the glomeruli were also observed in the mice. The mesangial expansion in the mice was significantly correlated with albuminuria. Furthermore, the heterozygous Bmp4 knock-out mice inhibited the glomerular injuries compared with wild type mice in diabetic conditions. Here, we show that BMP4 may act as an upstream regulatory molecule for the process of ECM accumulation in DN and thereby reveals a new aspect of the molecular mechanisms involved in DN.
机译:糖尿病肾病(DN)是慢性肾脏疾病的最常见原因。先前我们已经报道Smad1转录调节DN中细胞外基质(ECM)蛋白的表达。但是,关于诱导和激活Smad1的调控机制知之甚少。在这里,发现骨形态发生蛋白4(Bmp4)上调肾小球系膜细胞中Smad1的表达,并随后在晚期糖基化终产物受体的下游磷酸化Smad1,以促进晚期糖基化终产物的信号通路。此外,Bmp4利用Alk3并影响了系膜细胞中Smad1和Col4表达的激活。在糖尿病小鼠中,Bmp4在肾小球中被显着激活,并且系膜区扩大。为了阐明Bmp4作用在肾脏中的直接功能,我们生成了可诱导Bmp4表达的转基因小鼠。他莫昔芬治疗显着诱导Bmp4的表达,尤其是在小鼠肾小球中。值得注意的是,在非糖尿病状态下,小鼠不仅表现出肾小球膜面积扩大和基底膜增厚,而且表现出显着的蛋白尿,这与DN中明显的肾小球损伤一致。在小鼠中也观察到了ECM蛋白的过度表达和肾小球中Smad1的激活。小鼠的肾小球系膜扩张与蛋白尿显着相关。此外,在糖尿病条件下,与野生型小鼠相比,杂合性Bmp4敲除小鼠抑制了肾小球损伤。在这里,我们表明BMP4可以充当DN中ECM积累过程的上游调控分子,从而揭示DN中涉及的分子机制的新方面。

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