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多囊肾病的小鼠模型。

Mouse models of polycystic kidney disease.

作者信息

Wilson Patricia D

机构信息

Mount Sinai School of Medicine, New York, USA.

出版信息

Curr Top Dev Biol. 2008;84:311-50. doi: 10.1016/S0070-2153(08)00606-6.

Abstract

Polycystic kidney disease (PKD) is a diverse group of human monogenic lethal conditions inherited as autosomal dominant (AD) or recessive (AR) traits. Recent development of genetically engineered mouse models of ADPKD, ARPKD, and nephronophthisis/medullary cystic disease (NPHP) are providing additional insights into the molecular mechanisms governing of these disease processes as well as the developmental differentiation of the normal kidney. Genotypic and phenotypic mouse models are discussed and provide evidence for the fundamental involvement of cell-matrix, cell-cell, and primary cilia-lumen interactions, as well as epithelial proliferation, apoptosis, and polarization. Structure/function relationships between the PKD1, PKD2, PKHD1, and NPHP genes and proteins support the notion of a regulatory multiprotein cystic complex with a mechanosensory function that integrates signals from the extracellular environment. The plethora of intracellular signaling cascades that can impact renal cystic development suggest an exquisitely sensitive requirement for integrated downstream transduction and provide potential targets for therapeutic intervention. Appropriate genocopy models that faithfully recapitulate the phenotypic characteristics of the disease will be invaluable tools to analyze the effects of modifier genes and small molecule inhibitor therapies.

摘要

多囊肾病(PKD)是一组多样的人类单基因致死性疾病,以常染色体显性(AD)或隐性(AR)性状遗传。最近,常染色体显性多囊肾病(ADPKD)、常染色体隐性多囊肾病(ARPKD)以及肾单位肾痨/髓质囊性疾病(NPHP)的基因工程小鼠模型的开发,为调控这些疾病进程以及正常肾脏发育分化的分子机制提供了更多见解。本文讨论了基因型和表型小鼠模型,并为细胞-基质、细胞-细胞以及初级纤毛-管腔相互作用,以及上皮细胞增殖、凋亡和极化的基本参与提供了证据。PKD1、PKD2、PKHD1和NPHP基因与蛋白质之间的结构/功能关系支持了一种具有机械传感功能的调节性多蛋白囊性复合物的概念,该复合物整合来自细胞外环境的信号。大量可影响肾囊肿发育的细胞内信号级联反应表明,对整合的下游转导有极其敏感的需求,并为治疗干预提供了潜在靶点。能够忠实地重现疾病表型特征的合适基因复制模型,将成为分析修饰基因和小分子抑制剂疗法效果的宝贵工具。

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