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Individuals with mutations in XPNPEP3, which encodes a mitochondrial protein, develop a nephronophthisis-like nephropathy.

Authors :
O'Toole JF
Liu Y
Davis EE
Westlake CJ
Attanasio M
Otto EA
Seelow D
Nurnberg G
Becker C
Nuutinen M
Kärppä M
Ignatius J
Uusimaa J
Pakanen S
Jaakkola E
van den Heuvel LP
Fehrenbach H
Wiggins R
Goyal M
Zhou W
Wolf MT
Wise E
Helou J
Allen SJ
Murga-Zamalloa CA
Ashraf S
Chaki M
Heeringa S
Chernin G
Hoskins BE
Chaib H
Gleeson J
Kusakabe T
Suzuki T
Isaac RE
Quarmby LM
Tennant B
Fujioka H
Tuominen H
Hassinen I
Lohi H
van Houten JL
Rotig A
Sayer JA
Rolinski B
Freisinger P
Madhavan SM
Herzer M
Madignier F
Prokisch H
Nurnberg P
Jackson PK
Khanna H
Katsanis N
Hildebrandt F
Source :
The Journal of clinical investigation [J Clin Invest] 2010 Mar; Vol. 120 (3), pp. 791-802. Date of Electronic Publication: 2010 Feb 22.
Publication Year :
2010

Abstract

The autosomal recessive kidney disease nephronophthisis (NPHP) constitutes the most frequent genetic cause of terminal renal failure in the first 3 decades of life. Ten causative genes (NPHP1-NPHP9 and NPHP11), whose products localize to the primary cilia-centrosome complex, support the unifying concept that cystic kidney diseases are "ciliopathies". Using genome-wide homozygosity mapping, we report here what we believe to be a new locus (NPHP-like 1 [NPHPL1]) for an NPHP-like nephropathy. In 2 families with an NPHP-like phenotype, we detected homozygous frameshift and splice-site mutations, respectively, in the X-prolyl aminopeptidase 3 (XPNPEP3) gene. In contrast to all known NPHP proteins, XPNPEP3 localizes to mitochondria of renal cells. However, in vivo analyses also revealed a likely cilia-related function; suppression of zebrafish xpnpep3 phenocopied the developmental phenotypes of ciliopathy morphants, and this effect was rescued by human XPNPEP3 that was devoid of a mitochondrial localization signal. Consistent with a role for XPNPEP3 in ciliary function, several ciliary cystogenic proteins were found to be XPNPEP3 substrates, for which resistance to N-terminal proline cleavage resulted in attenuated protein function in vivo in zebrafish. Our data highlight an emerging link between mitochondria and ciliary dysfunction, and suggest that further understanding the enzymatic activity and substrates of XPNPEP3 will illuminate novel cystogenic pathways.

Details

Language :
English
ISSN :
1558-8238
Volume :
120
Issue :
3
Database :
MEDLINE
Journal :
The Journal of clinical investigation
Publication Type :
Academic Journal
Accession number :
20179356
Full Text :
https://doi.org/10.1172/JCI40076