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PBX1haploinsufficiency leads to syndromic congenital anomalies of the kidney and urinary tract (CAKUT) in humans

Authors :
Le Tanno, Pauline
Breton, Julie
Bidart, Marie
Satre, Véronique
Harbuz, Radu
Ray, Pierre F
Bosson, Caroline
Dieterich, Klaus
Jaillard, Sylvie
Odent, Sylvie
Poke, Gemma
Beddow, Rachel
Digilio, Maria Christina
Novelli, Antonio
Bernardini, Laura
Pisanti, Maria Antonietta
Mackenroth, Luisa
Hackmann, Karl
Vogel, Ida
Christensen, Rikke
Fokstuen, Siv
Bééééna, Fréédééérique
Amblard, Florence
Devillard, Francoise
Vieville, Gaelle
Apostolou, Alexia
Jouk, Pierre-Simon
Guebre-Egziabher, Fitsum
Sartelet, Hervééééé
Coutton, Charles
Source :
Journal of Medical Genetics (JMG); 2017, Vol. 54 Issue: 7 p502-510, 9p
Publication Year :
2017

Abstract

BackgroundCongenital anomalies of the kidney and urinary tract (CAKUT) represent a significant healthcare burden since it is the primary cause of chronic kidney in children. CNVs represent a recurrent molecular cause of CAKUT but the culprit gene remains often elusive. Our study aimed to define the gene responsible for CAKUT in patients with an 1q23.3q24.1 microdeletion.MethodsWe describe eight patients presenting with CAKUT carrying an 1q23.3q24.1 microdeletion as identified by chromosomal microarray analysis (CMA). Clinical features were collected, especially the renal and urinary tract phenotype, and extrarenal features. We characterised PBX1expression and localisation in fetal and adult kidneys using quantitative RT-PCR and immunohistochemistry.ResultsWe defined a 276-kb minimal common region (MCR) that only overlaps with the PBX1gene. All eight patients presented with syndromic CAKUT. CAKUT were mostly bilateral renal hypoplasia (75%). The most frequent extrarenal symptoms were developmental delay and ear malformations. We demonstrate that PBX1is strongly expressed in fetal kidneys and brain and expression levels decreased in adult samples. In control fetal kidneys, PBX1 was localised in nuclei of medullary, interstitial and mesenchymal cells, whereas it was present in endothelial cells in adult kidneys.ConclusionsOur results indicate that PBX1haploinsufficiency leads to syndromic CAKUT as supported by the Pbx1-null mice model. Correct PBX1 dosage appears to be critical for normal nephrogenesis and seems important for brain development in humans. CMA should be recommended in cases of fetal renal anomalies to improve genetic counselling and pregnancy management.

Details

Language :
English
ISSN :
00222593 and 14686244
Volume :
54
Issue :
7
Database :
Supplemental Index
Journal :
Journal of Medical Genetics (JMG)
Publication Type :
Periodical
Accession number :
ejs42597080
Full Text :
https://doi.org/10.1136/jmedgenet-2016-104435