首页> 美国卫生研究院文献>Journal of Histochemistry and Cytochemistry >Matrilysin (MMP-7) Inhibition of BMP-7 Induced Renal Tubular Branching Morphogenesis Suggests a Role in the Pathogenesis of Human Renal Dysplasia
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Matrilysin (MMP-7) Inhibition of BMP-7 Induced Renal Tubular Branching Morphogenesis Suggests a Role in the Pathogenesis of Human Renal Dysplasia

机译:基质素(MMP-7)抑制BMP-7诱导的肾小管分支形态发生提示在人类肾发育异常的发病机理中的作用

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摘要

Congenital renal dysplasia (RD) is a severe form of congenital renal malformation characterized by disruption of normal renal development with cyst formation, reduced or absent nephrons, and impaired renal growth. The authors previously identified that matrilysin (matrix metalloproteinase–7) was overexpressed in a microarray gene expression analysis of human RD compared to normal control kidneys. They now find that active matrilysin gene transcription and protein synthesis occur within dysplastic tubules and epithelial cells lining cysts in human RD by RT-PCR and immunohistochemistry. Similar staining patterns were seen in obstructed kidneys of pouch opossums that show histological features similar to that of human RD. In vitro, matrilysin inhibits formation of branching structures in mIMCD-3 cells stimulated by bone morphogenetic protein–7 (BMP-7) but does not inhibit hepatocyte growth factor–stimulated branching. BMP-7 signaling is essential for normal kidney development, and overexpression of catalytically active matrilysin in human embryonic kidney 293 cells reduces endogenous BMP-7 protein levels and inhibits phosphorylation of BMP-7 SMAD signaling intermediates. These findings suggest that matrilysin expression in RD may be an injury response that disrupts normal nephrogenesis by impairing BMP-7 signaling.
机译:先天性肾发育不良(RD)是先天性肾畸形的一种严重形式,其特征是正常肾脏发育受到破坏,形成了囊肿,肾单位减少或缺失,以及肾脏生长受损。作者先前发现,与正常对照肾脏相比,在人类RD的微阵列基因表达分析中,基质溶素(基质金属蛋白酶-7)过表达。他们现在发现,通过RT-PCR和免疫组织化学,活跃的基质溶素基因转录和蛋白质合成发生在人RD囊肿内的增生小管和上皮细胞内。在袋负鼠的阻塞性肾脏中观察到相似的染色模式,显示出与人类RD相似的组织学特征。在体外,基质胶溶酶抑制骨形态发生蛋白-7(BMP-7)刺激的mIMCD-3细胞中分支结构的形成,但不抑制肝细胞生长因子刺激的分支。 BMP-7信号对于正常的肾脏发育必不可少,人类胚胎肾脏293细胞中催化活性基质溶素的过表达降低了内源性BMP-7蛋白水平,并抑制了BMP-7 SMAD信号中间体的磷酸化。这些发现表明RD中的基质溶解素表达可能是通过损害BMP-7信号传导而破坏正常肾发生的损伤反应。

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