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Clinical and molecular characterization of cystinuria in a French cohort: relevance of assessing large‐scale rearrangements and splicing variants

BACKGROUND: Cystinuria is an autosomal recessive disorder of dibasic amino acid transport in the kidney and the intestine leading to increased urinary cystine excretion and nephrolithiasis. Two genes, SLC3A1 and SLC7A9, coding respectively for rBAT and b0,+AT, account for the genetic basis of cystin...

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Autores principales: Gaildrat, Pascaline, Lebbah, Said, Tebani, Abdellah, Sudrié‐Arnaud, Bénédicte, Tostivint, Isabelle, Bollee, Guillaume, Tubeuf, Hélène, Charles, Thomas, Bertholet‐Thomas, Aurelia, Goldenberg, Alice, Barbey, Frederic, Martins, Alexandra, Saugier‐Veber, Pascale, Frébourg, Thierry, Knebelmann, Bertrand, Bekri, Soumeya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5511796/
https://www.ncbi.nlm.nih.gov/pubmed/28717662
http://dx.doi.org/10.1002/mgg3.294
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author Gaildrat, Pascaline
Lebbah, Said
Tebani, Abdellah
Sudrié‐Arnaud, Bénédicte
Tostivint, Isabelle
Bollee, Guillaume
Tubeuf, Hélène
Charles, Thomas
Bertholet‐Thomas, Aurelia
Goldenberg, Alice
Barbey, Frederic
Martins, Alexandra
Saugier‐Veber, Pascale
Frébourg, Thierry
Knebelmann, Bertrand
Bekri, Soumeya
author_facet Gaildrat, Pascaline
Lebbah, Said
Tebani, Abdellah
Sudrié‐Arnaud, Bénédicte
Tostivint, Isabelle
Bollee, Guillaume
Tubeuf, Hélène
Charles, Thomas
Bertholet‐Thomas, Aurelia
Goldenberg, Alice
Barbey, Frederic
Martins, Alexandra
Saugier‐Veber, Pascale
Frébourg, Thierry
Knebelmann, Bertrand
Bekri, Soumeya
author_sort Gaildrat, Pascaline
collection PubMed
description BACKGROUND: Cystinuria is an autosomal recessive disorder of dibasic amino acid transport in the kidney and the intestine leading to increased urinary cystine excretion and nephrolithiasis. Two genes, SLC3A1 and SLC7A9, coding respectively for rBAT and b0,+AT, account for the genetic basis of cystinuria. METHODS: This study reports the clinical and molecular characterization of a French cohort including 112 cystinuria patients and 25 relatives from 99 families. Molecular screening was performed using sequencing and Quantitative Multiplex PCR of Short Fluorescent Fragments analyses. Functional minigene‐based assays have been used to characterize splicing variants. RESULTS: Eighty‐eight pathogenic nucleotide changes were identified in SLC3A1 (63) and SLC7A9 (25) genes, of which 42 were novel. Interestingly, 17% (15/88) and 11% (10/88) of the total number of variants correspond, respectively, to large‐scale rearrangements and splicing mutations. Functional minigene‐based assays were performed for six variants located outside the most conserved sequences of the splice sites; three variants affect splice sites, while three others modify exonic splicing regulatory elements (ESR), in good agreement with a new in silico prediction based on ΔtESRseq values. CONCLUSION: This report expands the spectrum of SLC3A1 and SLC7A9 variants and supports that digenic inheritance is unlikely. Furthermore, it highlights the relevance of assessing large‐scale rearrangements and splicing mutations to fully characterize cystinuria patients at the molecular level.
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spelling pubmed-55117962017-07-17 Clinical and molecular characterization of cystinuria in a French cohort: relevance of assessing large‐scale rearrangements and splicing variants Gaildrat, Pascaline Lebbah, Said Tebani, Abdellah Sudrié‐Arnaud, Bénédicte Tostivint, Isabelle Bollee, Guillaume Tubeuf, Hélène Charles, Thomas Bertholet‐Thomas, Aurelia Goldenberg, Alice Barbey, Frederic Martins, Alexandra Saugier‐Veber, Pascale Frébourg, Thierry Knebelmann, Bertrand Bekri, Soumeya Mol Genet Genomic Med Original Articles BACKGROUND: Cystinuria is an autosomal recessive disorder of dibasic amino acid transport in the kidney and the intestine leading to increased urinary cystine excretion and nephrolithiasis. Two genes, SLC3A1 and SLC7A9, coding respectively for rBAT and b0,+AT, account for the genetic basis of cystinuria. METHODS: This study reports the clinical and molecular characterization of a French cohort including 112 cystinuria patients and 25 relatives from 99 families. Molecular screening was performed using sequencing and Quantitative Multiplex PCR of Short Fluorescent Fragments analyses. Functional minigene‐based assays have been used to characterize splicing variants. RESULTS: Eighty‐eight pathogenic nucleotide changes were identified in SLC3A1 (63) and SLC7A9 (25) genes, of which 42 were novel. Interestingly, 17% (15/88) and 11% (10/88) of the total number of variants correspond, respectively, to large‐scale rearrangements and splicing mutations. Functional minigene‐based assays were performed for six variants located outside the most conserved sequences of the splice sites; three variants affect splice sites, while three others modify exonic splicing regulatory elements (ESR), in good agreement with a new in silico prediction based on ΔtESRseq values. CONCLUSION: This report expands the spectrum of SLC3A1 and SLC7A9 variants and supports that digenic inheritance is unlikely. Furthermore, it highlights the relevance of assessing large‐scale rearrangements and splicing mutations to fully characterize cystinuria patients at the molecular level. John Wiley and Sons Inc. 2017-05-16 /pmc/articles/PMC5511796/ /pubmed/28717662 http://dx.doi.org/10.1002/mgg3.294 Text en © 2017 Rouen University Hospital. Molecular Genetics & Genomic Medicine published by Wiley Periodicals, Inc. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Gaildrat, Pascaline
Lebbah, Said
Tebani, Abdellah
Sudrié‐Arnaud, Bénédicte
Tostivint, Isabelle
Bollee, Guillaume
Tubeuf, Hélène
Charles, Thomas
Bertholet‐Thomas, Aurelia
Goldenberg, Alice
Barbey, Frederic
Martins, Alexandra
Saugier‐Veber, Pascale
Frébourg, Thierry
Knebelmann, Bertrand
Bekri, Soumeya
Clinical and molecular characterization of cystinuria in a French cohort: relevance of assessing large‐scale rearrangements and splicing variants
title Clinical and molecular characterization of cystinuria in a French cohort: relevance of assessing large‐scale rearrangements and splicing variants
title_full Clinical and molecular characterization of cystinuria in a French cohort: relevance of assessing large‐scale rearrangements and splicing variants
title_fullStr Clinical and molecular characterization of cystinuria in a French cohort: relevance of assessing large‐scale rearrangements and splicing variants
title_full_unstemmed Clinical and molecular characterization of cystinuria in a French cohort: relevance of assessing large‐scale rearrangements and splicing variants
title_short Clinical and molecular characterization of cystinuria in a French cohort: relevance of assessing large‐scale rearrangements and splicing variants
title_sort clinical and molecular characterization of cystinuria in a french cohort: relevance of assessing large‐scale rearrangements and splicing variants
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5511796/
https://www.ncbi.nlm.nih.gov/pubmed/28717662
http://dx.doi.org/10.1002/mgg3.294
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