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Differential localization patterns of claudin 10, 16, and 19 in human, mouse, and rat renal tubular epithelia.

Authors :
Prot-Bertoye, Caroline
Griveau, Camille
Skjødt, Karsten
Cheval, Lydie
Brideau, Gaëlle
Lievre, Loïc
Ferriere, Elsa
Arbaretaz, Floriane
Garbin, Kevin
Zamani, Reza
Marcussen, Niels
Figueres, Lucile
Breiderhoff, Tilman
Muller, Dominik
Bruneval, Patrick
Houillier, Pascal
Dimke, Henrik
Source :
American Journal of Physiology: Renal Physiology. Aug2021, Vol. 321 Issue 2, pF207-F224. 18p.
Publication Year :
2021

Abstract

Functional properties of the paracellular pathway depend critically on the set of claudins (CLDN) expressed at the tight junction. Two syndromes are causally linked to loss-of-function mutations of claudins: hypohidrosis, electrolyte imbalance, lacrimal gland dysfunction, ichthyosis, and xerostomia (HELIX) syndrome caused by genetic variations in the CLDN10 gene and familial hypomagnesemia with hypercalciuria and nephrocalcinosis caused by genetic variations in the CLDN16 or CLDN19 genes. All three genes are expressed in the kidney, particularly in the thick ascending limb (TAL). However, localization of these claudins in humans and rodents remains to be delineated in detail. We studied the segmental and subcellular expression of CLDN10, CLDN16, and CLDN19 in both paraffin-embedded and frozen kidney sections from the adult human, mouse, and rat using immunohistochemistry and immunofluorescence, respectively. Here, CLDN10 was present in a subset of medullary and cortical TAL cells, localizing to basolateral domains and tight junctions in human and rodent kidneys. Weak expression was detected at the tight junction of proximal tubular cells. CLDN16 was primarily expressed in a subset of TAL cells in the cortex and outer stripe of outer medulla, restricted to basolateral domains and tight junctional structures in both human and rodent kidneys. CLDN19 predominantly colocalized with CLDN16 in tight junctions and basolateral domains of the TAL but was also found in basolateral and junctional domains in more distal sites. CLDN10 expression at tight junctions almost never overlapped with that of CLND16 and CLDN19, consistent with distinct junctional pathways with different permeation profiles in both human and rodent kidneys. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1931857X
Volume :
321
Issue :
2
Database :
Academic Search Index
Journal :
American Journal of Physiology: Renal Physiology
Publication Type :
Academic Journal
Accession number :
152197555
Full Text :
https://doi.org/10.1152/ajprenal.00579.2020