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Denys-Drash综合征中肾小球成熟受损及VEGF165b缺失。

Impaired glomerular maturation and lack of VEGF165b in Denys-Drash syndrome.

作者信息

Schumacher Valérie Anne, Jeruschke Stefanie, Eitner Frank, Becker Jan Ulrich, Pitschke Gerald, Ince Yasemin, Miner Jeffrey H, Leuschner Ivo, Engers Rainer, Everding Anne Schulze, Bulla Monika, Royer-Pokora Brigitte

机构信息

Institute of Human Genetics and Anthropology, Duesseldorg, Germany.

出版信息

J Am Soc Nephrol. 2007 Mar;18(3):719-29. doi: 10.1681/ASN.2006020124. Epub 2007 Jan 31.

Abstract

Individuals with Denys-Drash syndrome (DDS) develop diffuse mesangial sclerosis, ultimately leading to renal failure. The disease is caused by mutations that affect the zinc finger structure of the Wilms' tumor protein (WT1), but the mechanisms whereby these mutations result in glomerulosclerosis remain largely obscure. How WT1 regulates genes is likely to be complex, because it has multiple splice forms, binds both DNA and RNA, and associates with spliceosomes. Herein is described that in DDS podocytes, the ratio of both WT1 +KTS isoforms C to D differs considerably from that of normal child and adult control podocytes and more closely resembles fetal profiles. Aside from the delay in podocyte maturation, DDS glomeruli show swollen endothelial cells, reminiscent of endotheliosis, together with incompletely fused capillary basement membranes; a dramatic decrease in collagen alpha4(IV) and laminin beta2 chains; and the presence of immature or activated mesangial cells that express alpha-smooth muscle actin. Because appropriate vascular endothelial growth factor A (VEGF-A) expression is known to be essential for the development and maintenance of glomerular architecture and function, this article addresses the question of whether VEGF-A expression is deregulated in DDS. The data presented here show that DDS podocytes express high levels of the proangiogenic isoform VEGF165, but completely lack the inhibitory isoform VEGF165b. The VEGF165/VEGF165b ratio in DDS resembles that of fetal S-shaped bodies, rather than that of normal child or adult control subjects. The alteration in VEGF-A expression presented here may provide a mechanistic insight into the pathogenesis of DDS.

摘要

患有迪尼斯-德拉什综合征(DDS)的个体易患弥漫性系膜硬化,最终导致肾衰竭。该疾病由影响威尔姆斯瘤蛋白(WT1)锌指结构的突变引起,但这些突变导致肾小球硬化的机制仍不清楚。WT1如何调控基因可能很复杂,因为它有多种剪接形式,既能结合DNA也能结合RNA,还能与剪接体结合。本文描述了在DDS足细胞中,WT1 +KTS亚型C与D的比例与正常儿童和成人对照足细胞有很大差异,更类似于胎儿的情况。除了足细胞成熟延迟外,DDS肾小球显示内皮细胞肿胀,类似内皮细胞增多症,同时毛细血管基底膜融合不完全;胶原蛋白α4(IV)和层粘连蛋白β2链显著减少;存在表达α-平滑肌肌动蛋白的未成熟或活化系膜细胞。由于已知适当的血管内皮生长因子A(VEGF-A)表达对于肾小球结构和功能的发育及维持至关重要,本文探讨了DDS中VEGF-A表达是否失调的问题。这里给出的数据表明,DDS足细胞高表达促血管生成亚型VEGF165,但完全缺乏抑制性亚型VEGF165b。DDS中的VEGF165/VEGF165b比例类似于胎儿S形体的比例,而不是正常儿童或成人对照的比例。本文所呈现的VEGF-A表达改变可能为DDS的发病机制提供一个机制性的见解。

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