A Homozygous Missense Mutation in the Ciliary Gene TTC21B Causes Familial FSGS
Author(s) -
Evelyne Huynh Cong,
Albane A. Bizet,
Olivia Boyer,
Stéphanie Woerner,
Olivier Gribouval,
Emilie Filhol,
Christelle Arrondel,
Sophie Thomas,
Flora Silbermann,
Guillaume Canaud,
J. Hachicha,
Nasr Ben Dhia,
MarieNoelle Péraldi,
Kais Harzallah,
Daouia Iftene,
Laurent Daniel,
Marjolaine Willems,
LaureHélène Noël,
Christine BôleFeysot,
Patrick Nitschké,
MarieClaire Gubler,
Géraldine Mollet,
Sophie Saunier,
Corinne Antignac
Publication year - 2014
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.2013101126
Subject(s) - cilium , nephronophthisis , biology , missense mutation , intraflagellar transport , podocyte , mutation , microbiology and biotechnology , cancer research , genetics , kidney , gene , phenotype , mutant , proteinuria
Several genes, mainly involved in podocyte cytoskeleton regulation, have been implicated in familial forms of primary FSGS. We identified a homozygous missense mutation (p.P209L) in the TTC21B gene in seven families with FSGS. Mutations in this ciliary gene were previously reported to cause nephronophthisis, a chronic tubulointerstitial nephropathy. Notably, tubular basement membrane thickening reminiscent of that observed in nephronophthisis was present in patients with FSGS and the p.P209L mutation. We demonstrated that the TTC21B gene product IFT139, an intraflagellar transport-A component, mainly localizes at the base of the primary cilium in developing podocytes from human fetal tissue and in undifferentiated cultured podocytes. In contrast, in nonciliated adult podocytes and differentiated cultured cells, IFT139 relocalized along the extended microtubule network. We further showed that knockdown of IFT139 in podocytes leads to primary cilia defects, abnormal cell migration, and cytoskeleton alterations, which can be partially rescued by p.P209L overexpression, indicating its hypomorphic effect. Our results demonstrate the involvement of a ciliary gene in a glomerular disorder and point to a critical function of IFT139 in podocytes. Altogether, these data suggest that this homozygous TTC21B p.P209L mutation leads to a novel hereditary kidney disorder with both glomerular and tubulointerstitial damages.
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