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常染色体显性多囊肾病的分子基础

Molecular basis of autosomal dominant polycystic kidney disease.

作者信息

Watnick T, Germino G G

机构信息

Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

出版信息

Semin Nephrol. 1999 Jul;19(4):327-43.

Abstract

Recent studies have identified the genes mutated in the two major forms of autosomal dominant polycystic kidney disease, PKD1 and PKD2. The PKD1 gene product is likely to be a very large membrane-associated glycoprotein that functions as a receptor for cell-cell or cell-matrix interactions. PKD2 has significant homology to the family of voltage-activated calcium channels. Both proteins are expressed in the developing kidney and appear to have an overlapping pattern of expression. Several studies suggest that the gene products are interacting partners of a signaling pathway. Studies of human tissue suggest a two-hit genetic mechanism is responsible for both forms of the disease. Consistent with this hypothesis, murine models engineered with loss-of-function mutations of Pkd1 or Pkd2 develop cystic disease in the homozygous state. In these animals, renal development proceeds normally through day 15, at approximately which time renal cysts begin to form. The studies suggest an essential role for the PKD proteins in regulating later stages of tubular maturation. The animal models will be useful resources for defining the pathogenesis of autosomal dominant polycystic kidney disease and testing various therapeutic interventions. The two-hit model has potentially important clinical implications.

摘要

最近的研究已经确定了常染色体显性多囊肾病两种主要类型中发生突变的基因,即PKD1和PKD2。PKD1基因产物可能是一种非常大的膜相关糖蛋白,其功能是作为细胞间或细胞与基质相互作用的受体。PKD2与电压激活钙通道家族具有显著的同源性。这两种蛋白在发育中的肾脏中均有表达,且表达模式似乎有重叠。多项研究表明,这些基因产物是一条信号通路的相互作用伙伴。对人体组织的研究表明,双打击遗传机制是这两种疾病的病因。与这一假设一致,通过Pkd1或Pkd2功能缺失突变构建的小鼠模型在纯合状态下会发生囊性疾病。在这些动物中,肾脏发育在第15天之前正常进行,大约在这个时候肾囊肿开始形成。这些研究表明PKD蛋白在调节肾小管成熟后期起着重要作用。这些动物模型将成为确定常染色体显性多囊肾病发病机制和测试各种治疗干预措施的有用资源。双打击模型具有潜在的重要临床意义。

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