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The LIM-homeodomain transcription factor Lmx1b plays a crucial role in podocytes

机译:LIM同源域转录因子Lmx1b在足细胞中起关键作用

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摘要

Patients with nail-patella syndrome often suffer from a nephropathy, which ultimately results in chronic renal failure. The finding that this disease is caused by mutations in the transcription factor LMX1B, which in the kidney is expressed exclusively in podocytes, offers the opportunity for a better understanding of the renal pathogenesis. In our analysis of the nephropathy in nail-patella syndrome, we have made use of the Lmx1b knockout mouse. Transmission electron micrographs showed that glomerular development in general and the differentiation of podocytes in particular were severely impaired. The glomerular capillary network was poorly elaborated, fenestrae in the endothelial cells were largely missing, and the glomerular basement membrane was split. In addition podocytes retained a cuboidal shape and did not form foot processes and slit diaphragms. Expression of the α4 chain of collagen IV and of podocin was also severely reduced. Using gel shift assays, we demonstrated that LMX1B bound to two AT-rich sequences in the promoter region of NPHS2, the gene encoding podocin. Our results demonstrate that Lmx1b regulates important steps in glomerular development and establish a link between three hereditary kidney diseases: nail-patella syndrome (Lmx1b), steroid-resistant nephrotic syndrome (podocin), and Alport syndrome (collagen IV α4).
机译:指甲pat骨综合征患者经常患有肾病,最终导致慢性肾功能衰竭。该疾病是由转录因子LMX1B的突变引起的,该发现在肾脏中仅在足细胞中表达,这为更好地了解肾脏发病机理提供了机会。在我们对指甲ella骨综合征肾病的分析中,我们使用了Lmx1b基因敲除小鼠。透射电子显微照片显示,总体上肾小球发育特别是足细胞的分化受到严重损害。肾小球毛细血管网络细化,内皮细胞内的窗孔大量缺失,肾小球基底膜裂开。另外,足细胞保持长方体形状,并且不形成足突和裂slit。胶原蛋白IV和podocin的α4链的表达也被严重降低。使用凝胶位移分析,我们证明了LMX1B与NPHS2(编码Podocin的基因)的启动子区域中的两个AT丰富的序列结合。我们的研究结果表明,Lmx1b调节肾小球发育的重要步骤,并在三种遗传性肾脏疾病之间建立联系:指甲pat骨综合征(Lmx1b),抗类固醇性肾病综合征(podocin)和Alport综合征(胶原IVα4)。

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