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Mutations in KEOPS-complex genes cause nephrotic syndrome with primary microcephaly.

Authors :
Braun DA
Rao J
Mollet G
Schapiro D
Daugeron MC
Tan W
Gribouval O
Boyer O
Revy P
Jobst-Schwan T
Schmidt JM
Lawson JA
Schanze D
Ashraf S
Ullmann JFP
Hoogstraten CA
Boddaert N
Collinet B
Martin G
Liger D
Lovric S
Furlano M
Guerrera IC
Sanchez-Ferras O
Hu JF
Boschat AC
Sanquer S
Menten B
Vergult S
De Rocker N
Airik M
Hermle T
Shril S
Widmeier E
Gee HY
Choi WI
Sadowski CE
Pabst WL
Warejko JK
Daga A
Basta T
Matejas V
Scharmann K
Kienast SD
Behnam B
Beeson B
Begtrup A
Bruce M
Ch'ng GS
Lin SP
Chang JH
Chen CH
Cho MT
Gaffney PM
Gipson PE
Hsu CH
Kari JA
Ke YY
Kiraly-Borri C
Lai WM
Lemyre E
Littlejohn RO
Masri A
Moghtaderi M
Nakamura K
Ozaltin F
Praet M
Prasad C
Prytula A
Roeder ER
Rump P
Schnur RE
Shiihara T
Sinha MD
Soliman NA
Soulami K
Sweetser DA
Tsai WH
Tsai JD
Topaloglu R
Vester U
Viskochil DH
Vatanavicharn N
Waxler JL
Wierenga KJ
Wolf MTF
Wong SN
Leidel SA
Truglio G
Dedon PC
Poduri A
Mane S
Lifton RP
Bouchard M
Kannu P
Chitayat D
Magen D
Callewaert B
van Tilbeurgh H
Zenker M
Antignac C
Hildebrandt F
Source :
Nature genetics [Nat Genet] 2017 Oct; Vol. 49 (10), pp. 1529-1538. Date of Electronic Publication: 2017 Aug 14.
Publication Year :
2017

Abstract

Galloway-Mowat syndrome (GAMOS) is an autosomal-recessive disease characterized by the combination of early-onset nephrotic syndrome (SRNS) and microcephaly with brain anomalies. Here we identified recessive mutations in OSGEP, TP53RK, TPRKB, and LAGE3, genes encoding the four subunits of the KEOPS complex, in 37 individuals from 32 families with GAMOS. CRISPR-Cas9 knockout in zebrafish and mice recapitulated the human phenotype of primary microcephaly and resulted in early lethality. Knockdown of OSGEP, TP53RK, or TPRKB inhibited cell proliferation, which human mutations did not rescue. Furthermore, knockdown of these genes impaired protein translation, caused endoplasmic reticulum stress, activated DNA-damage-response signaling, and ultimately induced apoptosis. Knockdown of OSGEP or TP53RK induced defects in the actin cytoskeleton and decreased the migration rate of human podocytes, an established intermediate phenotype of SRNS. We thus identified four new monogenic causes of GAMOS, describe a link between KEOPS function and human disease, and delineate potential pathogenic mechanisms.

Details

Language :
English
ISSN :
1546-1718
Volume :
49
Issue :
10
Database :
MEDLINE
Journal :
Nature genetics
Publication Type :
Academic Journal
Accession number :
28805828
Full Text :
https://doi.org/10.1038/ng.3933