Vascular polycystin proteins in health and disease

IF 1.9 4区 医学 Q3 HEMATOLOGY Microcirculation Pub Date : 2023-10-12 DOI:10.1111/micc.12834
Ulrich C. Mbiakop, Jonathan H. Jaggar
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Abstract

PKD1 (polycystin 1) and PKD2 (polycystin 2) are expressed in a variety of different cell types, including arterial smooth muscle and endothelial cells. PKD1 is a transmembrane domain protein with a large extracellular N-terminus that is proposed to act as a mechanosensor and receptor. PKD2 is a member of the transient receptor potential (TRP) channel superfamily which is also termed TRPP1. Mutations in the genes which encode PKD1 and PKD2 lead to autosomal dominant polycystic kidney disease (ADPKD). ADPKD is one of the most prevalent monogenic disorders in humans and is associated with extrarenal and vascular complications, including hypertension. Recent studies have uncovered mechanisms of activation and physiological functions of PKD1 and PKD2 in arterial smooth muscle and endothelial cells. It has also been found that PKD function is altered in the vasculature during ADPKD and hypertension. We will summarize this work and discuss future possibilities for this area of research.

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血管性多囊蛋白在健康和疾病中的作用。
PKD1(多囊蛋白1)和PKD2(多囊蛋白2)在多种不同的细胞类型中表达,包括动脉平滑肌和内皮细胞。PKD1是一种跨膜结构域蛋白,具有大的细胞外N末端,被认为是一种机械传感器和受体。PKD2是瞬时受体电位(TRP)通道超家族的成员,也称为TRPP1。编码PKD1和PKD2的基因突变导致常染色体多囊肾病(ADPKD)。ADPKD是人类最常见的单基因疾病之一,与肾外和血管并发症有关,包括高血压。最近的研究揭示了PKD1和PKD2在动脉平滑肌和内皮细胞中的激活机制和生理功能。还发现,在ADPKD和高血压期间,血管系统中的PKD功能发生改变。我们将总结这项工作,并讨论这一研究领域未来的可能性。
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来源期刊
Microcirculation
Microcirculation 医学-外周血管病
CiteScore
5.00
自引率
4.20%
发文量
43
审稿时长
6-12 weeks
期刊介绍: The journal features original contributions that are the result of investigations contributing significant new information relating to the vascular and lymphatic microcirculation addressed at the intact animal, organ, cellular, or molecular level. Papers describe applications of the methods of physiology, biophysics, bioengineering, genetics, cell biology, biochemistry, and molecular biology to problems in microcirculation. Microcirculation also publishes state-of-the-art reviews that address frontier areas or new advances in technology in the fields of microcirculatory disease and function. Specific areas of interest include: Angiogenesis, growth and remodeling; Transport and exchange of gasses and solutes; Rheology and biorheology; Endothelial cell biology and metabolism; Interactions between endothelium, smooth muscle, parenchymal cells, leukocytes and platelets; Regulation of vasomotor tone; and Microvascular structures, imaging and morphometry. Papers also describe innovations in experimental techniques and instrumentation for studying all aspects of microcirculatory structure and function.
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