Ion permeability profiles of renal paracellular channel-forming claudins

IF 5.6 2区 医学 Q1 PHYSIOLOGY Acta Physiologica Pub Date : 2025-01-17 DOI:10.1111/apha.14264
Ioanna Pouyiourou, Anja Fromm, Jörg Piontek, Rita Rosenthal, Mikio Furuse, Dorothee Günzel
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Abstract

Aim

Members of the claudin protein family are the major constituents of tight junction strands and determine the permeability properties of the paracellular pathway. In the kidney, each nephron segment expresses a distinct subset of claudins that form either barriers against paracellular solute transport or charge- and size-selective paracellular channels. It was the aim of the present study to determine and compare the permeation properties of these renal paracellular ion channel-forming claudins.

Methods

MDCK II cells, in which the five major claudins had been knocked out (claudin quintupleKO), were stably transfected with individual mouse Cldn2, -4, -8, -10a, -10b, or -15, or with dog Cldn16 or -19, or with a combination of mouse Cldn4 and Cldn8, or dog Cldn16 and Cldn19. Permeation properties were investigated in the Ussing chamber and claudin interactions by FRET assays.

Results

Claudin-4 and -19 formed barriers against solute permeation. However, at low pH values and in the absence of HCO3, claudin-4 conveyed a weak chloride and nitrate permeability. Claudin-8 needed claudin-4 for assembly into TJ strands and abolished this anion preference. Claudin-2, -10a, -10b, -15, -16+19 formed highly permeable channels with distinctive permeation profiles for different monovalent and divalent anions or cations, but barriers against the permeation of ions of opposite charge and of the paracellular tracer fluorescein.

Conclusion

Paracellular ion permeabilities along the nephron are strictly determined by claudin expression patterns. Paracellular channel-forming claudins are specific for certain ions and thus lower transepithelial resistance, yet form barriers against the transport of other solutes.

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肾细胞旁通道形成蛋白的离子渗透性。
目的:claudin蛋白家族成员是紧密连接链的主要组成部分,并决定细胞旁通路的通透性。在肾脏中,每个肾单元段表达一个独特的claudin亚群,这些claudin或形成细胞旁溶质运输的屏障,或形成电荷和大小选择性的细胞旁通道。这是本研究的目的,以确定和比较这些肾旁细胞离子通道形成的claudin的渗透特性。方法:将敲除5个主要claudin (claudin 5 - pleko)的MDCK II细胞稳定转染单个小鼠Cldn2、-4、-8、-10a、-10b或-15,或犬Cldn16或-19,或小鼠Cldn4和Cldn8、犬Cldn16和Cldn19的组合。通过FRET实验研究了ususing chamber和claudin相互作用下的渗透特性。结果:Claudin-4和-19形成阻碍溶质渗透的屏障。然而,在低pH值和缺乏HCO3 -的情况下,claudin-4传递了弱氯化物和硝酸盐的渗透性。Claudin-8需要claudin-4才能组装到TJ链中,并消除了这种阴离子偏好。Claudin-2、-10a、-10b、-15、-16+19形成了高渗透性通道,对不同的单价和二价阴离子或阳离子具有不同的渗透曲线,但对相反电荷离子和细胞旁示踪剂荧光素的渗透存在障碍。结论:沿肾元的细胞旁离子通透性严格由claudin表达模式决定。细胞旁通道形成的粘附蛋白对某些离子是特异性的,因此降低了经上皮的阻力,但对其他溶质的运输形成障碍。
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来源期刊
Acta Physiologica
Acta Physiologica 医学-生理学
CiteScore
11.80
自引率
15.90%
发文量
182
审稿时长
4-8 weeks
期刊介绍: Acta Physiologica is an important forum for the publication of high quality original research in physiology and related areas by authors from all over the world. Acta Physiologica is a leading journal in human/translational physiology while promoting all aspects of the science of physiology. The journal publishes full length original articles on important new observations as well as reviews and commentaries.
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