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Intercalated Cell Depletion and Vacuolar H+-ATPase Mistargeting in an Ae1 R607H Knockin Model
Author(s) -
Rizwan Mumtaz,
Francesco Trepiccione,
J. Christopher Hennings,
Antje K. Huebner,
Bettina Serbin,
Nicolas Picard,
Asad Ullah,
Teodor G. Păunescu,
Diane E. Capen,
Rawad Lashhab,
Isabelle Mouro-Chanteloup,
Seth L. Alper,
Carsten A. Wagner,
Emmanuelle Cordat,
Dennis Brown,
Dominique Eladari,
Christian A. Hübner
Publication year - 2016
Publication title -
journal of the american society of nephrology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.451
H-Index - 279
eISSN - 1533-3450
pISSN - 1046-6673
DOI - 10.1681/asn.2016020169
Subject(s) - intercalated cell , distal renal tubular acidosis , band 3 , v atpase , epithelial polarity , microbiology and biotechnology , secretion , biology , intracellular ph , nephron , atpase , intracellular , chemistry , medicine , endocrinology , biochemistry , kidney , cell , membrane protein , metabolic acidosis , membrane , enzyme
Distal nephron acid secretion is mediated by highly specialized type A intercalated cells (A-ICs), which contain vacuolar H + -ATPase (V-type ATPase)-rich vesicles that fuse with the apical plasma membrane on demand. Intracellular bicarbonate generated by luminal H + secretion is removed by the basolateral anion-exchanger AE1. Chronically reduced renal acid excretion in distal renal tubular acidosis (dRTA) may lead to nephrocalcinosis and renal failure. Studies in MDCK monolayers led to the proposal of a dominant-negative trafficking mechanism to explain AE1-associated dominant dRTA. To test this hypothesis in vivo , we generated an Ae1 R607H knockin mouse, which corresponds to the most common dominant dRTA mutation in human AE1, R589H. Compared with wild-type mice, heterozygous and homozygous R607H knockin mice displayed incomplete dRTA characterized by compensatory upregulation of the Na + /HCO 3 - cotransporter NBCn1. Red blood cell Ae1-mediated anion-exchange activity and surface polypeptide expression did not change. Mutant mice expressed far less Ae1 in A-ICs, but basolateral targeting of the mutant protein was preserved. Notably, mutant mice also exhibited reduced expression of V-type ATPase and compromised targeting of this proton pump to the plasma membrane upon acid challenge. Accumulation of p62- and ubiquitin-positive material in A-ICs of knockin mice suggested a defect in the degradative pathway, which may explain the observed loss of A-ICs. R607H knockin did not affect type B intercalated cells. We propose that reduced basolateral anion-exchange activity in A-ICs inhibits trafficking and regulation of V-type ATPase, compromising luminal H + secretion and possibly lysosomal acidification.

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