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Exome Survey and Candidate Gene Re-Sequencing Identifies Novel Exstrophy Candidate Genes and Implicates LZTR1 in Disease Formation
Background: The bladder exstrophy-epispadias complex (BEEC) is a spectrum of congenital abnormalities that involves the abdominal wall, the bony pelvis, the urinary tract, the external genitalia, and, in severe cases, the gastrointestinal tract as well. Methods: Herein, we performed an exome analysi...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10377188/ https://www.ncbi.nlm.nih.gov/pubmed/37509153 http://dx.doi.org/10.3390/biom13071117 |
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author | Köllges, Ricarda Stegmann, Jil Schneider, Sophia Waffenschmidt, Lea Fazaal, Julia Breuer, Katinka Hilger, Alina C. Dworschak, Gabriel C. Mingardo, Enrico Rösch, Wolfgang Hofmann, Aybike Neissner, Claudia Ebert, Anne-Karolin Stein, Raimund Younsi, Nina Hirsch-Koch, Karin Schmiedeke, Eberhard Zwink, Nadine Jenetzky, Ekkehart Thiele, Holger Ludwig, Kerstin U. Reutter, Heiko |
author_facet | Köllges, Ricarda Stegmann, Jil Schneider, Sophia Waffenschmidt, Lea Fazaal, Julia Breuer, Katinka Hilger, Alina C. Dworschak, Gabriel C. Mingardo, Enrico Rösch, Wolfgang Hofmann, Aybike Neissner, Claudia Ebert, Anne-Karolin Stein, Raimund Younsi, Nina Hirsch-Koch, Karin Schmiedeke, Eberhard Zwink, Nadine Jenetzky, Ekkehart Thiele, Holger Ludwig, Kerstin U. Reutter, Heiko |
author_sort | Köllges, Ricarda |
collection | PubMed |
description | Background: The bladder exstrophy-epispadias complex (BEEC) is a spectrum of congenital abnormalities that involves the abdominal wall, the bony pelvis, the urinary tract, the external genitalia, and, in severe cases, the gastrointestinal tract as well. Methods: Herein, we performed an exome analysis of case-parent trios with cloacal exstrophy (CE), the most severe form of the BEEC. Furthermore, we surveyed the exome of a sib-pair presenting with classic bladder exstrophy (CBE) and epispadias (E) only. Moreover, we performed large-scale re-sequencing of CBE individuals for novel candidate genes that were derived from the current exome analysis, as well as for previously reported candidate genes within the CBE phenocritical region, 22q11.2. Results: The exome survey in the CE case-parent trios identified two candidate genes harboring de novo variants (NR1H2, GKAP1), four candidate genes with autosomal-recessive biallelic variants (AKR1B10, CLSTN3, NDST4, PLEKHB1) and one candidate gene with suggestive uniparental disomy (SVEP1). However, re-sequencing did not identify any additional variant carriers in these candidate genes. Analysis of the affected sib-pair revealed no candidate gene. Re-sequencing of the genes within the 22q11.2 CBE phenocritical region identified two highly conserved frameshift variants that led to early termination in two independent CBE males, in LZTR1 (c.978_985del, p.Ser327fster6) and in SLC7A4 (c.1087delC, p.Arg363fster68). Conclusions: According to previous studies, our study further implicates LZTR1 in CBE formation. Exome analysis-derived candidate genes from CE individuals may not represent a frequent indicator for other BEEC phenotypes and warrant molecular analysis before their involvement in disease formation can be assumed. |
format | Online Article Text |
id | pubmed-10377188 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-103771882023-07-29 Exome Survey and Candidate Gene Re-Sequencing Identifies Novel Exstrophy Candidate Genes and Implicates LZTR1 in Disease Formation Köllges, Ricarda Stegmann, Jil Schneider, Sophia Waffenschmidt, Lea Fazaal, Julia Breuer, Katinka Hilger, Alina C. Dworschak, Gabriel C. Mingardo, Enrico Rösch, Wolfgang Hofmann, Aybike Neissner, Claudia Ebert, Anne-Karolin Stein, Raimund Younsi, Nina Hirsch-Koch, Karin Schmiedeke, Eberhard Zwink, Nadine Jenetzky, Ekkehart Thiele, Holger Ludwig, Kerstin U. Reutter, Heiko Biomolecules Article Background: The bladder exstrophy-epispadias complex (BEEC) is a spectrum of congenital abnormalities that involves the abdominal wall, the bony pelvis, the urinary tract, the external genitalia, and, in severe cases, the gastrointestinal tract as well. Methods: Herein, we performed an exome analysis of case-parent trios with cloacal exstrophy (CE), the most severe form of the BEEC. Furthermore, we surveyed the exome of a sib-pair presenting with classic bladder exstrophy (CBE) and epispadias (E) only. Moreover, we performed large-scale re-sequencing of CBE individuals for novel candidate genes that were derived from the current exome analysis, as well as for previously reported candidate genes within the CBE phenocritical region, 22q11.2. Results: The exome survey in the CE case-parent trios identified two candidate genes harboring de novo variants (NR1H2, GKAP1), four candidate genes with autosomal-recessive biallelic variants (AKR1B10, CLSTN3, NDST4, PLEKHB1) and one candidate gene with suggestive uniparental disomy (SVEP1). However, re-sequencing did not identify any additional variant carriers in these candidate genes. Analysis of the affected sib-pair revealed no candidate gene. Re-sequencing of the genes within the 22q11.2 CBE phenocritical region identified two highly conserved frameshift variants that led to early termination in two independent CBE males, in LZTR1 (c.978_985del, p.Ser327fster6) and in SLC7A4 (c.1087delC, p.Arg363fster68). Conclusions: According to previous studies, our study further implicates LZTR1 in CBE formation. Exome analysis-derived candidate genes from CE individuals may not represent a frequent indicator for other BEEC phenotypes and warrant molecular analysis before their involvement in disease formation can be assumed. MDPI 2023-07-13 /pmc/articles/PMC10377188/ /pubmed/37509153 http://dx.doi.org/10.3390/biom13071117 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Köllges, Ricarda Stegmann, Jil Schneider, Sophia Waffenschmidt, Lea Fazaal, Julia Breuer, Katinka Hilger, Alina C. Dworschak, Gabriel C. Mingardo, Enrico Rösch, Wolfgang Hofmann, Aybike Neissner, Claudia Ebert, Anne-Karolin Stein, Raimund Younsi, Nina Hirsch-Koch, Karin Schmiedeke, Eberhard Zwink, Nadine Jenetzky, Ekkehart Thiele, Holger Ludwig, Kerstin U. Reutter, Heiko Exome Survey and Candidate Gene Re-Sequencing Identifies Novel Exstrophy Candidate Genes and Implicates LZTR1 in Disease Formation |
title | Exome Survey and Candidate Gene Re-Sequencing Identifies Novel Exstrophy Candidate Genes and Implicates LZTR1 in Disease Formation |
title_full | Exome Survey and Candidate Gene Re-Sequencing Identifies Novel Exstrophy Candidate Genes and Implicates LZTR1 in Disease Formation |
title_fullStr | Exome Survey and Candidate Gene Re-Sequencing Identifies Novel Exstrophy Candidate Genes and Implicates LZTR1 in Disease Formation |
title_full_unstemmed | Exome Survey and Candidate Gene Re-Sequencing Identifies Novel Exstrophy Candidate Genes and Implicates LZTR1 in Disease Formation |
title_short | Exome Survey and Candidate Gene Re-Sequencing Identifies Novel Exstrophy Candidate Genes and Implicates LZTR1 in Disease Formation |
title_sort | exome survey and candidate gene re-sequencing identifies novel exstrophy candidate genes and implicates lztr1 in disease formation |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10377188/ https://www.ncbi.nlm.nih.gov/pubmed/37509153 http://dx.doi.org/10.3390/biom13071117 |
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