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Rothmund–Thomson Syndrome: novel pathogenic mutations and frequencies of variants in the RECQL4 and USB1 (C16orf57) gene

BACKGROUND: Poikiloderma is defined as a chronic skin condition presenting with a combination of punctate atrophy, areas of depigmentation, hyperpigmentation and telangiectasia. In a variety of hereditary syndromes such as Rothmund–Thomson syndrome (RTS), Clericuzio‐type poikiloderma with neutropeni...

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Autores principales: Suter, Aude‐Annick, Itin, Peter, Heinimann, Karl, Ahmed, Munaza, Ashraf, Tazeen, Fryssira, Helen, Kini, Usha, Lapunzina, Pablo, Miny, Peter, Sommerlund, Mette, Suri, Mohnish, Vaeth, Signe, Vasudevan, Pradeep, Gallati, Sabina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4867568/
https://www.ncbi.nlm.nih.gov/pubmed/27247962
http://dx.doi.org/10.1002/mgg3.209
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author Suter, Aude‐Annick
Itin, Peter
Heinimann, Karl
Ahmed, Munaza
Ashraf, Tazeen
Fryssira, Helen
Kini, Usha
Lapunzina, Pablo
Miny, Peter
Sommerlund, Mette
Suri, Mohnish
Vaeth, Signe
Vasudevan, Pradeep
Gallati, Sabina
author_facet Suter, Aude‐Annick
Itin, Peter
Heinimann, Karl
Ahmed, Munaza
Ashraf, Tazeen
Fryssira, Helen
Kini, Usha
Lapunzina, Pablo
Miny, Peter
Sommerlund, Mette
Suri, Mohnish
Vaeth, Signe
Vasudevan, Pradeep
Gallati, Sabina
author_sort Suter, Aude‐Annick
collection PubMed
description BACKGROUND: Poikiloderma is defined as a chronic skin condition presenting with a combination of punctate atrophy, areas of depigmentation, hyperpigmentation and telangiectasia. In a variety of hereditary syndromes such as Rothmund–Thomson syndrome (RTS), Clericuzio‐type poikiloderma with neutropenia (PN) and Dyskeratosis Congenita (DC), poikiloderma occurs as one of the main symptoms. Here, we report on genotype and phenotype data of a cohort of 44 index patients with RTS or related genodermatoses. METHODS: DNA samples from 43 patients were screened for variants in the 21 exons of the RECQL4 gene using PCR, SSCP‐PAGE analysis and/or Sanger sequencing. Patients with only one or no detectable mutation in the RECQL4 gene were additionally tested for variants in the 8 exons of the USB1 (C16orf57) gene by Sanger sequencing. The effect of novel variants was evaluated by phylogenic studies, single‐nucleotide polymorphism (SNP) databases and in silico analyses. RESULTS: We identified 23 different RECQL4 mutations including 10 novel and one homozygous novel USB1 (C16orf57) mutation in a patient with PN. Moreover, we describe 31 RECQL4 and 8 USB1 sequence variants, four of them being novel intronic RECQL4 sequence changes that may have some deleterious effects on splicing mechanisms and need further evaluation by transcript analyses. CONCLUSION: The current study contributes to the improvement of genetic diagnostic strategies and interpretation in RTS and PN that is relevant in order to assess the patients' cancer risk, to avoid continuous and inconclusive clinical evaluations and to clarify the recurrence risk in the families. Additionally, it shows that the phenotype of more than 50% of the patients with suspected Rothmund–Thomson disease may be due to mutations in other genes raising the need for further extended genetic analyses.
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spelling pubmed-48675682016-05-31 Rothmund–Thomson Syndrome: novel pathogenic mutations and frequencies of variants in the RECQL4 and USB1 (C16orf57) gene Suter, Aude‐Annick Itin, Peter Heinimann, Karl Ahmed, Munaza Ashraf, Tazeen Fryssira, Helen Kini, Usha Lapunzina, Pablo Miny, Peter Sommerlund, Mette Suri, Mohnish Vaeth, Signe Vasudevan, Pradeep Gallati, Sabina Mol Genet Genomic Med Original Articles BACKGROUND: Poikiloderma is defined as a chronic skin condition presenting with a combination of punctate atrophy, areas of depigmentation, hyperpigmentation and telangiectasia. In a variety of hereditary syndromes such as Rothmund–Thomson syndrome (RTS), Clericuzio‐type poikiloderma with neutropenia (PN) and Dyskeratosis Congenita (DC), poikiloderma occurs as one of the main symptoms. Here, we report on genotype and phenotype data of a cohort of 44 index patients with RTS or related genodermatoses. METHODS: DNA samples from 43 patients were screened for variants in the 21 exons of the RECQL4 gene using PCR, SSCP‐PAGE analysis and/or Sanger sequencing. Patients with only one or no detectable mutation in the RECQL4 gene were additionally tested for variants in the 8 exons of the USB1 (C16orf57) gene by Sanger sequencing. The effect of novel variants was evaluated by phylogenic studies, single‐nucleotide polymorphism (SNP) databases and in silico analyses. RESULTS: We identified 23 different RECQL4 mutations including 10 novel and one homozygous novel USB1 (C16orf57) mutation in a patient with PN. Moreover, we describe 31 RECQL4 and 8 USB1 sequence variants, four of them being novel intronic RECQL4 sequence changes that may have some deleterious effects on splicing mechanisms and need further evaluation by transcript analyses. CONCLUSION: The current study contributes to the improvement of genetic diagnostic strategies and interpretation in RTS and PN that is relevant in order to assess the patients' cancer risk, to avoid continuous and inconclusive clinical evaluations and to clarify the recurrence risk in the families. Additionally, it shows that the phenotype of more than 50% of the patients with suspected Rothmund–Thomson disease may be due to mutations in other genes raising the need for further extended genetic analyses. John Wiley and Sons Inc. 2016-02-24 /pmc/articles/PMC4867568/ /pubmed/27247962 http://dx.doi.org/10.1002/mgg3.209 Text en © 2016 The Authors. 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
Suter, Aude‐Annick
Itin, Peter
Heinimann, Karl
Ahmed, Munaza
Ashraf, Tazeen
Fryssira, Helen
Kini, Usha
Lapunzina, Pablo
Miny, Peter
Sommerlund, Mette
Suri, Mohnish
Vaeth, Signe
Vasudevan, Pradeep
Gallati, Sabina
Rothmund–Thomson Syndrome: novel pathogenic mutations and frequencies of variants in the RECQL4 and USB1 (C16orf57) gene
title Rothmund–Thomson Syndrome: novel pathogenic mutations and frequencies of variants in the RECQL4 and USB1 (C16orf57) gene
title_full Rothmund–Thomson Syndrome: novel pathogenic mutations and frequencies of variants in the RECQL4 and USB1 (C16orf57) gene
title_fullStr Rothmund–Thomson Syndrome: novel pathogenic mutations and frequencies of variants in the RECQL4 and USB1 (C16orf57) gene
title_full_unstemmed Rothmund–Thomson Syndrome: novel pathogenic mutations and frequencies of variants in the RECQL4 and USB1 (C16orf57) gene
title_short Rothmund–Thomson Syndrome: novel pathogenic mutations and frequencies of variants in the RECQL4 and USB1 (C16orf57) gene
title_sort rothmund–thomson syndrome: novel pathogenic mutations and frequencies of variants in the recql4 and usb1 (c16orf57) gene
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4867568/
https://www.ncbi.nlm.nih.gov/pubmed/27247962
http://dx.doi.org/10.1002/mgg3.209
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