The pathophysiology of many proteinuric kidney diseases is poorly understood, and microRNAs (miRs) regulation of these diseases has been largely unexplored. Here, we tested whether miR-378a-3p is a novel regulator of glomerular diseases. MiR-378a-3p has two predicted targets relevant to glomerular function, the glomerular basement membrane matrix component, nephronectin (NPNT), and vascular endothelial growth factor VEGF-A. In zebrafish (Danio rerio), miR-378a-3p mimic injection or npnt knockdown by a morpholino oligomer caused an identical phenotype consisting of edema, proteinuria, podocyte effacement, and widening of the glomerular basement membrane in the lamina rara interna. Zebrafish vegf-A protein could not rescue this phenotype. However, mouse Npnt constructs containing a mutated 3'UTR region prevented the phenotype caused by miR-378a-3p mimic injection. Overexpression of miR-378a-3p in mice confirmed glomerular dysfunction in a mammalian model. Biopsies from patients with focal segmental glomerulosclerosis and membranous nephropathy had increased miR-378a-3p expression and reduced glomerular levels of NPNT. Thus, miR-378a-3p-mediated suppression of the glomerular matrix protein NPNT is a novel mechanism for proteinuria development in active glomerular diseases.
Podocytes regulate the glomerular basement membrane protein nephronectin by means of miR-378a-3p in glomerular diseases.
在肾小球疾病中,足细胞通过 miR-378a-3p 调节肾小球基底膜蛋白肾连接蛋白
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作者:Müller-Deile Janina, Dannenberg Jan, Schroder Patricia, Lin Meei-Hua, Miner Jeffrey H, Chen Rongjun, Bräsen Jan-Hinrich, Thum Thomas, Nyström Jenny, Staggs Lynne Beverly, Haller Hermann, Fiedler Jan, Lorenzen Johan M, Schiffer Mario
| 期刊: | Kidney International | 影响因子: | 12.600 |
| 时间: | 2017 | 起止号: | 2017 Oct;92(4):836-849 |
| doi: | 10.1016/j.kint.2017.03.005 | 研究方向: | 细胞生物学 |
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