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Chromosomal imbalance letter: Phenotypic consequences of combined deletion 8pter and duplication 15qter

Exact breakpoint determination by oligonucleotide array-CGH has improved the analysis of genotype-phenotype correlations in cases with chromosome aberrations allowing a more accurate definition of relevant genes, particularly their isolated or combined impact on the phenotype in an unbalanced state....

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Autores principales: Sheth, Frenny, Andrieux, Joris, Tewari, Stuti, Sheth, Harsh, Desai, Manisha, Kumari, Pritti, Nanavaty, Nidhish, Sheth, Jayesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3750467/
https://www.ncbi.nlm.nih.gov/pubmed/23815819
http://dx.doi.org/10.1186/1755-8166-6-24
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author Sheth, Frenny
Andrieux, Joris
Tewari, Stuti
Sheth, Harsh
Desai, Manisha
Kumari, Pritti
Nanavaty, Nidhish
Sheth, Jayesh
author_facet Sheth, Frenny
Andrieux, Joris
Tewari, Stuti
Sheth, Harsh
Desai, Manisha
Kumari, Pritti
Nanavaty, Nidhish
Sheth, Jayesh
author_sort Sheth, Frenny
collection PubMed
description Exact breakpoint determination by oligonucleotide array-CGH has improved the analysis of genotype-phenotype correlations in cases with chromosome aberrations allowing a more accurate definition of relevant genes, particularly their isolated or combined impact on the phenotype in an unbalanced state. Chromosomal imbalances have been identified as one of the major causes of mental retardation and/or malformation syndromes and they are observed in ~2-5% of the cases. Here we report a female child born to non-consanguineous parents and having multiple congenital anomalies such as atrial septal defect and multiple ventricular septal defects, convergent strabismus, micropthalmia, seizures and mental retardation, with her head circumference and stature normal for her age. Cytogenetic study suggested 46,XX,add(8)(p23). Further analysis by array-CGH using 44K oligonucleotide probe confirmed deletion on 8p23.3p23.1 of 7.1 Mb and duplication involving 15q23q26.3 of 30 Mb size leading to 46,XX,der(8)t(8;15)(p23.3;q23)pat.arr 8p23.3p23.1(191,530-7,303,237)x1,15q23q26.3(72,338,961-102,35,195)x3. The unique phenotypic presentation in our case may have resulted from either loss or gain of a series of contiguous genes which may have resulted in a direct phenotypic effect and/or caused a genetic regulatory disturbance. Double segmental aberrations may have conferred phenotypic variability, as in our case, making it difficult to predict the characteristics that evolved as a result of the global gene imbalance, caused by the concomitant deletion and duplication.
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spelling pubmed-37504672013-08-24 Chromosomal imbalance letter: Phenotypic consequences of combined deletion 8pter and duplication 15qter Sheth, Frenny Andrieux, Joris Tewari, Stuti Sheth, Harsh Desai, Manisha Kumari, Pritti Nanavaty, Nidhish Sheth, Jayesh Mol Cytogenet Case Report Exact breakpoint determination by oligonucleotide array-CGH has improved the analysis of genotype-phenotype correlations in cases with chromosome aberrations allowing a more accurate definition of relevant genes, particularly their isolated or combined impact on the phenotype in an unbalanced state. Chromosomal imbalances have been identified as one of the major causes of mental retardation and/or malformation syndromes and they are observed in ~2-5% of the cases. Here we report a female child born to non-consanguineous parents and having multiple congenital anomalies such as atrial septal defect and multiple ventricular septal defects, convergent strabismus, micropthalmia, seizures and mental retardation, with her head circumference and stature normal for her age. Cytogenetic study suggested 46,XX,add(8)(p23). Further analysis by array-CGH using 44K oligonucleotide probe confirmed deletion on 8p23.3p23.1 of 7.1 Mb and duplication involving 15q23q26.3 of 30 Mb size leading to 46,XX,der(8)t(8;15)(p23.3;q23)pat.arr 8p23.3p23.1(191,530-7,303,237)x1,15q23q26.3(72,338,961-102,35,195)x3. The unique phenotypic presentation in our case may have resulted from either loss or gain of a series of contiguous genes which may have resulted in a direct phenotypic effect and/or caused a genetic regulatory disturbance. Double segmental aberrations may have conferred phenotypic variability, as in our case, making it difficult to predict the characteristics that evolved as a result of the global gene imbalance, caused by the concomitant deletion and duplication. BioMed Central 2013-07-01 /pmc/articles/PMC3750467/ /pubmed/23815819 http://dx.doi.org/10.1186/1755-8166-6-24 Text en Copyright © 2013 Sheth et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Case Report
Sheth, Frenny
Andrieux, Joris
Tewari, Stuti
Sheth, Harsh
Desai, Manisha
Kumari, Pritti
Nanavaty, Nidhish
Sheth, Jayesh
Chromosomal imbalance letter: Phenotypic consequences of combined deletion 8pter and duplication 15qter
title Chromosomal imbalance letter: Phenotypic consequences of combined deletion 8pter and duplication 15qter
title_full Chromosomal imbalance letter: Phenotypic consequences of combined deletion 8pter and duplication 15qter
title_fullStr Chromosomal imbalance letter: Phenotypic consequences of combined deletion 8pter and duplication 15qter
title_full_unstemmed Chromosomal imbalance letter: Phenotypic consequences of combined deletion 8pter and duplication 15qter
title_short Chromosomal imbalance letter: Phenotypic consequences of combined deletion 8pter and duplication 15qter
title_sort chromosomal imbalance letter: phenotypic consequences of combined deletion 8pter and duplication 15qter
topic Case Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3750467/
https://www.ncbi.nlm.nih.gov/pubmed/23815819
http://dx.doi.org/10.1186/1755-8166-6-24
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