肾脏初级纤毛的功能及其与肾脏疾病的关系。

2区 生物学 Q1 Biochemistry, Genetics and Molecular Biology
Current Topics in Developmental Biology Pub Date : 2023-01-01 Epub Date: 2023-08-16 DOI:10.1016/bs.ctdb.2023.07.001
Kelsey R Clearman, Courtney J Haycraft, Mandy J Croyle, James F Collawn, Bradley K Yoder
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引用次数: 0

摘要

非运动的初级纤毛是一种感觉结构,存在于大多数哺乳动物细胞类型中,它整合了涉及组织发育和产后功能的多种信号通路。因此,破坏纤毛活动的突变引起一组被称为纤毛病的疾病。这些疾病表现出广泛的表型,影响几乎每一个组织。在肾脏中,由多囊蛋白1 (Pkd1)、多囊蛋白2 (Pkd2)或多囊肾和肝脏疾病1 (Pkhd1)突变引起的原发性纤毛功能障碍导致多囊肾病(PKD),多囊肾病是一种进行性疾病,导致肾功能下降和终末期肾病。PKD影响近千分之一的人,由于PKD无法治愈,患者经常需要透析或肾移植。Pkd1、Pkd2和Pkhd1编码的膜蛋白都位于纤毛中。Pkd1和Pkd2作为非选择性阳离子通道复合物发挥作用,而Pkhd1蛋白的功能仍不确定。数据表明,纤毛可以作为机械传感器来检测液体通过肾小管的运动。纤毛和PKD蛋白在囊肿发育中的其他功能包括调节细胞周期和定向分裂,调节肾脏炎症和修复过程,维持上皮细胞分化,调节线粒体结构和代谢。然而,纤毛或纤毛功能的丧失如何导致囊肿的发展仍然是难以捉摸的。研究旨在了解Pkd1、Pkd2和Pkhd1在纤毛和细胞内其他部位的作用,对于制定减缓囊肿进展的治疗策略至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Functions of the primary cilium in the kidney and its connection with renal diseases.

The nonmotile primary cilium is a sensory structure found on most mammalian cell types that integrates multiple signaling pathways involved in tissue development and postnatal function. As such, mutations disrupting cilia activities cause a group of disorders referred to as ciliopathies. These disorders exhibit a wide spectrum of phenotypes impacting nearly every tissue. In the kidney, primary cilia dysfunction caused by mutations in polycystin 1 (Pkd1), polycystin 2 (Pkd2), or polycystic kidney and hepatic disease 1 (Pkhd1), result in polycystic kidney disease (PKD), a progressive disorder causing renal functional decline and end-stage renal disease. PKD affects nearly 1 in 1000 individuals and as there is no cure for PKD, patients frequently require dialysis or renal transplantation. Pkd1, Pkd2, and Pkhd1 encode membrane proteins that all localize in the cilium. Pkd1 and Pkd2 function as a nonselective cation channel complex while Pkhd1 protein function remains uncertain. Data indicate that the cilium may act as a mechanosensor to detect fluid movement through renal tubules. Other functions proposed for the cilium and PKD proteins in cyst development involve regulation of cell cycle and oriented division, regulation of renal inflammation and repair processes, maintenance of epithelial cell differentiation, and regulation of mitochondrial structure and metabolism. However, how loss of cilia or cilia function leads to cyst development remains elusive. Studies directed at understanding the roles of Pkd1, Pkd2, and Pkhd1 in the cilium and other locations within the cell will be important for developing therapeutic strategies to slow cyst progression.

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