In the kidney, tight junction proteins contribute to segment specific selectivity and permeability of paracellular ion transport. In the thick ascending limb (TAL) of Henle's loop, chloride is reabsorbed transcellularly, whereas sodium reabsorption takes transcellular and paracellular routes. TAL salt transport maintains the concentrating ability of the kidney and generates a transepithelial voltage that drives the reabsorption of calcium and magnesium. Thus, functionality of TAL ion transport depends strongly on the properties of the paracellular pathway. To elucidate the role of the tight junction protein claudin-10 in TAL function, we generated mice with a deletion of Cldn10 in this segment. We show that claudin-10 determines paracellula...
Epithelia permit selective and regulated flux from apical to basolateral surfaces by transcellular p...
International audienceBackground: Water and solute transport across epithelia can occur via the tran...
Contains fulltext : 177678.pdf (publisher's version ) (Closed access)Mice lacking ...
Background The tight junction proteins claudin-2 and claudin-10a form paracellular cation and anion ...
BACKGROUND: The tight junction proteins claudin-2 and claudin-10a form paracellular cation and anion...
Background The tight junction proteins claudin-2 and claudin-10a form paracellular cation and anion ...
The tight junction proteins claudin-10 and -16 are crucial for the paracellular reabsorption of cati...
Claudins are strategically located to exert their physiologic actions along with the nephron segment...
Claudin16 (CLDN16) is critical for renal paracellular epithelial transport of Ca(2+) and Mg(2+) in t...
Claudins constitute the major component of tight junctions and regulate paracellular permeability of...
<div><p>Claudins constitute the major component of tight junctions and regulate paracellular permeab...
Claudin-7 knockout (CLDN7-/-) mice display renal salt wasting and dehydration\r\nphenotypes. To addr...
The concentration of circulating blood calcium is vital to the function of many cellular processes. ...
Background: in renal tubules, paracellular permeability is tightly controlled to facilitate solute a...
Claudin-7 knockout (CLDN7−/−) mice display renal salt wasting and dehydration phenotypes. To ad...
Epithelia permit selective and regulated flux from apical to basolateral surfaces by transcellular p...
International audienceBackground: Water and solute transport across epithelia can occur via the tran...
Contains fulltext : 177678.pdf (publisher's version ) (Closed access)Mice lacking ...
Background The tight junction proteins claudin-2 and claudin-10a form paracellular cation and anion ...
BACKGROUND: The tight junction proteins claudin-2 and claudin-10a form paracellular cation and anion...
Background The tight junction proteins claudin-2 and claudin-10a form paracellular cation and anion ...
The tight junction proteins claudin-10 and -16 are crucial for the paracellular reabsorption of cati...
Claudins are strategically located to exert their physiologic actions along with the nephron segment...
Claudin16 (CLDN16) is critical for renal paracellular epithelial transport of Ca(2+) and Mg(2+) in t...
Claudins constitute the major component of tight junctions and regulate paracellular permeability of...
<div><p>Claudins constitute the major component of tight junctions and regulate paracellular permeab...
Claudin-7 knockout (CLDN7-/-) mice display renal salt wasting and dehydration\r\nphenotypes. To addr...
The concentration of circulating blood calcium is vital to the function of many cellular processes. ...
Background: in renal tubules, paracellular permeability is tightly controlled to facilitate solute a...
Claudin-7 knockout (CLDN7−/−) mice display renal salt wasting and dehydration phenotypes. To ad...
Epithelia permit selective and regulated flux from apical to basolateral surfaces by transcellular p...
International audienceBackground: Water and solute transport across epithelia can occur via the tran...
Contains fulltext : 177678.pdf (publisher's version ) (Closed access)Mice lacking ...