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Cytogenetic and molecular diagnosis of Fanconi anemia revealed two hidden phenotypes: Disorder of sex development and cerebro‐oculo‐facio‐skeletal syndrome

BACKGROUND: Several studies have shown a high rate of consanguinity and endogamy in North African populations. As a result, the frequency of autosomal recessive diseases is relatively high in the region with the co‐occurrence of two or more diseases. METHODS: We report here on a consanguineous Libya...

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Autores principales: Ben Haj Ali, Abir, Amouri, Ahlem, Sayeb, Marwa, Makni, Saloua, Hammami, Wajih, Naouali, Chokri, Dallali, Hamza, Romdhane, Lilia, Bashamboo, Anu, McElreavey, Kenneth, Abdelhak, Sonia, Messaoud, Olfa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6625148/
https://www.ncbi.nlm.nih.gov/pubmed/31124294
http://dx.doi.org/10.1002/mgg3.694
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author Ben Haj Ali, Abir
Amouri, Ahlem
Sayeb, Marwa
Makni, Saloua
Hammami, Wajih
Naouali, Chokri
Dallali, Hamza
Romdhane, Lilia
Bashamboo, Anu
McElreavey, Kenneth
Abdelhak, Sonia
Messaoud, Olfa
author_facet Ben Haj Ali, Abir
Amouri, Ahlem
Sayeb, Marwa
Makni, Saloua
Hammami, Wajih
Naouali, Chokri
Dallali, Hamza
Romdhane, Lilia
Bashamboo, Anu
McElreavey, Kenneth
Abdelhak, Sonia
Messaoud, Olfa
author_sort Ben Haj Ali, Abir
collection PubMed
description BACKGROUND: Several studies have shown a high rate of consanguinity and endogamy in North African populations. As a result, the frequency of autosomal recessive diseases is relatively high in the region with the co‐occurrence of two or more diseases. METHODS: We report here on a consanguineous Libyan family whose child was initially diagnosed as presenting Fanconi anemia (FA) with uncommon skeletal deformities. The chromosome breakage test has been performed using mitomycin C (MMC) while molecular analysis was performed by a combined approach of linkage analysis and whole exome sequencing. RESULTS: Cytogenetic analyses showed that the karyotype of the female patient is 46,XY suggesting the diagnosis of a disorder of sex development (DSD). By looking at the genetic etiology of FA and DSD, we have identified p.[Arg798*];[Arg798*] mutation in FANCJ (OMIM #605882) gene responsible for FA and p.[Arg108*];[Arg1497Trp] in EFCAB6 (Gene #64800) gene responsible for DSD. In addition, we have incidentally discovered a novel mutation p.[Gly1372Arg];[Gly1372Arg] in the ERCC6 (CSB) (OMIM #609413) gene responsible for COFS that might explain the atypical severe skeletal deformities. CONCLUSION: The co‐occurrence of clinical and overlapping genetic heterogeneous entities should be taken into consideration for better molecular and genetic counseling.
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spelling pubmed-66251482019-07-17 Cytogenetic and molecular diagnosis of Fanconi anemia revealed two hidden phenotypes: Disorder of sex development and cerebro‐oculo‐facio‐skeletal syndrome Ben Haj Ali, Abir Amouri, Ahlem Sayeb, Marwa Makni, Saloua Hammami, Wajih Naouali, Chokri Dallali, Hamza Romdhane, Lilia Bashamboo, Anu McElreavey, Kenneth Abdelhak, Sonia Messaoud, Olfa Mol Genet Genomic Med Original Articles BACKGROUND: Several studies have shown a high rate of consanguinity and endogamy in North African populations. As a result, the frequency of autosomal recessive diseases is relatively high in the region with the co‐occurrence of two or more diseases. METHODS: We report here on a consanguineous Libyan family whose child was initially diagnosed as presenting Fanconi anemia (FA) with uncommon skeletal deformities. The chromosome breakage test has been performed using mitomycin C (MMC) while molecular analysis was performed by a combined approach of linkage analysis and whole exome sequencing. RESULTS: Cytogenetic analyses showed that the karyotype of the female patient is 46,XY suggesting the diagnosis of a disorder of sex development (DSD). By looking at the genetic etiology of FA and DSD, we have identified p.[Arg798*];[Arg798*] mutation in FANCJ (OMIM #605882) gene responsible for FA and p.[Arg108*];[Arg1497Trp] in EFCAB6 (Gene #64800) gene responsible for DSD. In addition, we have incidentally discovered a novel mutation p.[Gly1372Arg];[Gly1372Arg] in the ERCC6 (CSB) (OMIM #609413) gene responsible for COFS that might explain the atypical severe skeletal deformities. CONCLUSION: The co‐occurrence of clinical and overlapping genetic heterogeneous entities should be taken into consideration for better molecular and genetic counseling. John Wiley and Sons Inc. 2019-05-23 /pmc/articles/PMC6625148/ /pubmed/31124294 http://dx.doi.org/10.1002/mgg3.694 Text en © 2019 The Authors. Molecular Genetics & Genomic Medicine published by Wiley Periodicals, Inc. This is an open access article under the terms of the 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
Ben Haj Ali, Abir
Amouri, Ahlem
Sayeb, Marwa
Makni, Saloua
Hammami, Wajih
Naouali, Chokri
Dallali, Hamza
Romdhane, Lilia
Bashamboo, Anu
McElreavey, Kenneth
Abdelhak, Sonia
Messaoud, Olfa
Cytogenetic and molecular diagnosis of Fanconi anemia revealed two hidden phenotypes: Disorder of sex development and cerebro‐oculo‐facio‐skeletal syndrome
title Cytogenetic and molecular diagnosis of Fanconi anemia revealed two hidden phenotypes: Disorder of sex development and cerebro‐oculo‐facio‐skeletal syndrome
title_full Cytogenetic and molecular diagnosis of Fanconi anemia revealed two hidden phenotypes: Disorder of sex development and cerebro‐oculo‐facio‐skeletal syndrome
title_fullStr Cytogenetic and molecular diagnosis of Fanconi anemia revealed two hidden phenotypes: Disorder of sex development and cerebro‐oculo‐facio‐skeletal syndrome
title_full_unstemmed Cytogenetic and molecular diagnosis of Fanconi anemia revealed two hidden phenotypes: Disorder of sex development and cerebro‐oculo‐facio‐skeletal syndrome
title_short Cytogenetic and molecular diagnosis of Fanconi anemia revealed two hidden phenotypes: Disorder of sex development and cerebro‐oculo‐facio‐skeletal syndrome
title_sort cytogenetic and molecular diagnosis of fanconi anemia revealed two hidden phenotypes: disorder of sex development and cerebro‐oculo‐facio‐skeletal syndrome
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6625148/
https://www.ncbi.nlm.nih.gov/pubmed/31124294
http://dx.doi.org/10.1002/mgg3.694
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