Literature DB >> 26105184

WNT3 involvement in human bladder exstrophy and cloaca development in zebrafish.

Izabella Baranowska Körberg1, Wolfgang Hofmeister2, Ellen Markljung3, Jia Cao3, Daniel Nilsson4, Michael Ludwig5, Markus Draaken6, Gundela Holmdahl7, Gillian Barker8, Heiko Reutter9, Vladana Vukojević10, Christina Clementson Kockum11, Johanna Lundin1, Anna Lindstrand12, Agneta Nordenskjöld13.   

Abstract

Bladder exstrophy, a severe congenital urological malformation when a child is born with an open urinary bladder, is the most common form of bladder exstrophy-epispadias complex (BEEC) with an incidence of 1:30,000 children of Caucasian descent. Recent studies suggest that WNT genes may contribute to the etiology of bladder exstrophy. Here, we evaluated WNT-pathway genes in 20 bladder exstrophy patients using massively parallel sequencing. In total 13 variants were identified in WNT3, WNT6, WNT7A, WNT8B, WNT10A, WNT11, WNT16, FZD5, LRP1 and LRP10 genes and predicted as potentially disease causing, of which seven variants were novel. One variant, identified in a patient with a de novo nonsynonymous substitution in WNT3 (p.Cys91Arg), was further evaluated in zebrafish. Knock down of wnt3 in zebrafish showed cloaca malformations, including disorganization of the cloaca epithelium and expansion of the cloaca lumen. Our study suggests that the function of the WNT3 p.Cys91Arg variant was altered, since RNA overexpression of mutant Wnt3 RNA does not result in embryonic lethality as seen with wild-type WNT3 mRNA. Finally, we also mutation screened the WNT3 gene further in 410 DNA samples from BEEC cases and identified one additional mutation c.638G>A (p.Gly213Asp), which was paternally inherited. In aggregate our data support the involvement of WNT-pathway genes in BEEC and suggest that WNT3 in itself is a rare cause of BEEC.
© The Author 2015. Published by Oxford University Press. All rights reserved. For Permissions, please email: journals.permissions@oup.com.

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Year:  2015        PMID: 26105184     DOI: 10.1093/hmg/ddv225

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  6 in total

Review 1.  Pronephric tubule formation in zebrafish: morphogenesis and migration.

Authors:  Richard W Naylor; Alan J Davidson
Journal:  Pediatr Nephrol       Date:  2016-03-04       Impact factor: 3.714

Review 2.  Multidisciplinary approaches for elucidating genetics and molecular pathogenesis of urinary tract malformations.

Authors:  Kamal Khan; Dina F Ahram; Yangfan P Liu; Rik Westland; Rosemary V Sampogna; Nicholas Katsanis; Erica E Davis; Simone Sanna-Cherchi
Journal:  Kidney Int       Date:  2021-11-12       Impact factor: 10.612

Review 3.  The Genomic Architecture of Bladder Exstrophy Epispadias Complex.

Authors:  Glenda M Beaman; Raimondo M Cervellione; David Keene; Heiko Reutter; William G Newman
Journal:  Genes (Basel)       Date:  2021-07-28       Impact factor: 4.096

4.  ISL1 is a major susceptibility gene for classic bladder exstrophy and a regulator of urinary tract development.

Authors:  Rong Zhang; Michael Knapp; Kentaro Suzuki; Daiki Kajioka; Johanna M Schmidt; Jonas Winkler; Öznur Yilmaz; Michael Pleschka; Jia Cao; Christina Clementson Kockum; Gillian Barker; Gundela Holmdahl; Glenda Beaman; David Keene; Adrian S Woolf; Raimondo M Cervellione; Wei Cheng; Simon Wilkins; John P Gearhart; Fabio Sirchia; Massimo Di Grazia; Anne-Karolin Ebert; Wolfgang Rösch; Jörg Ellinger; Ekkehart Jenetzky; Nadine Zwink; Wout F Feitz; Carlo Marcelis; Johannes Schumacher; Federico Martinón-Torres; Martin Lloyd Hibberd; Chiea Chuen Khor; Stefanie Heilmann-Heimbach; Sandra Barth; Simeon A Boyadjiev; Alfredo Brusco; Michael Ludwig; William Newman; Agneta Nordenskjöld; Gen Yamada; Benjamin Odermatt; Heiko Reutter
Journal:  Sci Rep       Date:  2017-02-08       Impact factor: 4.379

5.  Further support linking the 22q11.2 microduplication to an increased risk of bladder exstrophy and highlighting LZTR1 as a candidate gene.

Authors:  Johanna Lundin; Ellen Markljung; Izabella Baranowska Körberg; Wolfgang Hofmeister; Jia Cao; Daniel Nilsson; Gundela Holmdahl; Gillian Barker; Magnus Anderberg; Vladana Vukojević; Anna Lindstrand; Agneta Nordenskjöld
Journal:  Mol Genet Genomic Med       Date:  2019-05-01       Impact factor: 2.183

6.  Evaluation of the ISL1 gene in the pathogenesis of bladder exstrophy in a Swedish cohort.

Authors:  Samara Arkani; Jia Cao; Johanna Lundin; Daniel Nilsson; Thomas Källman; Gillian Barker; Gundela Holmdahl; Christina Clementsson Kockum; Hans Matsson; Agneta Nordenskjöld
Journal:  Hum Genome Var       Date:  2018-03-29
  6 in total

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