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Atypical nested 22q11.2 duplications between LCR22B and LCR22D are associated with neurodevelopmental phenotypes including autism spectrum disorder with incomplete penetrance

BACKGROUND: Chromosome 22q11.2 is susceptible to genomic rearrangements and the most frequently reported involve deletions and duplications between low copy repeats LCR22A to LCR22D. Atypical nested deletions and duplications are rarer and can provide a valuable opportunity to investigate the dosage...

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Autores principales: Woodward, Karen J., Stampalia, Julie, Vanyai, Hannah, Rijhumal, Hashika, Potts, Kim, Taylor, Fiona, Peverall, Joanne, Grumball, Tanya, Sivamoorthy, Soruba, Alinejad‐Rokny, Hamid, Wray, John, Whitehouse, Andrew, Nagarajan, Lakshmi, Scurlock, Jacqueline, Afchani, Sabine, Edwards, Matthew, Murch, Ashleigh, Beilby, John, Baynam, Gareth, Kiraly‐Borri, Cathy, McKenzie, Fiona, Heng, Julian I. T.
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/PMC6393688/
https://www.ncbi.nlm.nih.gov/pubmed/30614210
http://dx.doi.org/10.1002/mgg3.507
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author Woodward, Karen J.
Stampalia, Julie
Vanyai, Hannah
Rijhumal, Hashika
Potts, Kim
Taylor, Fiona
Peverall, Joanne
Grumball, Tanya
Sivamoorthy, Soruba
Alinejad‐Rokny, Hamid
Wray, John
Whitehouse, Andrew
Nagarajan, Lakshmi
Scurlock, Jacqueline
Afchani, Sabine
Edwards, Matthew
Murch, Ashleigh
Beilby, John
Baynam, Gareth
Kiraly‐Borri, Cathy
McKenzie, Fiona
Heng, Julian I. T.
author_facet Woodward, Karen J.
Stampalia, Julie
Vanyai, Hannah
Rijhumal, Hashika
Potts, Kim
Taylor, Fiona
Peverall, Joanne
Grumball, Tanya
Sivamoorthy, Soruba
Alinejad‐Rokny, Hamid
Wray, John
Whitehouse, Andrew
Nagarajan, Lakshmi
Scurlock, Jacqueline
Afchani, Sabine
Edwards, Matthew
Murch, Ashleigh
Beilby, John
Baynam, Gareth
Kiraly‐Borri, Cathy
McKenzie, Fiona
Heng, Julian I. T.
author_sort Woodward, Karen J.
collection PubMed
description BACKGROUND: Chromosome 22q11.2 is susceptible to genomic rearrangements and the most frequently reported involve deletions and duplications between low copy repeats LCR22A to LCR22D. Atypical nested deletions and duplications are rarer and can provide a valuable opportunity to investigate the dosage effects of a smaller subset of genes within the 22q11.2 genomic disorder region. METHODS: We describe thirteen individuals from six families, each with atypical nested duplications within the central 22q11.2 region between LCR22B and LCR22D. We then compared the molecular and clinical data for patients from this study and the few reported atypical duplication cases, to the cases with larger typical duplications between LCR22A and LCR22D. Further, we analyzed genes with the nested region to identify candidates highly enriched in human brain tissues. RESULTS: We observed that atypical nested duplications are heterogeneous in size, often familial, and associated with incomplete penetrance and highly variable clinical expressivity. We found that the nested atypical duplications are a possible risk factor for neurodevelopmental phenotypes, particularly for autism spectrum disorder (ASD), speech and language delay, and behavioral abnormalities. In addition, we analyzed genes within the nested region between LCR22B and LCR22D to identify nine genes (ZNF74, KLHL22, MED15, PI4KA, SERPIND1, CRKL, AIFM3, SLC7A4, and BCRP2) with enriched expression in the nervous system, each with unique spatiotemporal patterns in fetal and adult brain tissues. Interestingly, PI4KA is prominently expressed in the brain, and this gene is included either partially or completely in all of our subjects. CONCLUSION: Our findings confirm variable expressivity and incomplete penetrance for atypical nested 22q11.2 duplications and identify genes such as PI4KA to be directly relevant to brain development and disorder. We conclude that further work is needed to elucidate the basis of variable neurodevelopmental phenotypes and to exclude the presence of a second disorder. Our findings contribute to the genotype–phenotype data for atypical nested 22q11.2 duplications, with implications for genetic counseling.
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spelling pubmed-63936882019-03-08 Atypical nested 22q11.2 duplications between LCR22B and LCR22D are associated with neurodevelopmental phenotypes including autism spectrum disorder with incomplete penetrance Woodward, Karen J. Stampalia, Julie Vanyai, Hannah Rijhumal, Hashika Potts, Kim Taylor, Fiona Peverall, Joanne Grumball, Tanya Sivamoorthy, Soruba Alinejad‐Rokny, Hamid Wray, John Whitehouse, Andrew Nagarajan, Lakshmi Scurlock, Jacqueline Afchani, Sabine Edwards, Matthew Murch, Ashleigh Beilby, John Baynam, Gareth Kiraly‐Borri, Cathy McKenzie, Fiona Heng, Julian I. T. Mol Genet Genomic Med Original Articles BACKGROUND: Chromosome 22q11.2 is susceptible to genomic rearrangements and the most frequently reported involve deletions and duplications between low copy repeats LCR22A to LCR22D. Atypical nested deletions and duplications are rarer and can provide a valuable opportunity to investigate the dosage effects of a smaller subset of genes within the 22q11.2 genomic disorder region. METHODS: We describe thirteen individuals from six families, each with atypical nested duplications within the central 22q11.2 region between LCR22B and LCR22D. We then compared the molecular and clinical data for patients from this study and the few reported atypical duplication cases, to the cases with larger typical duplications between LCR22A and LCR22D. Further, we analyzed genes with the nested region to identify candidates highly enriched in human brain tissues. RESULTS: We observed that atypical nested duplications are heterogeneous in size, often familial, and associated with incomplete penetrance and highly variable clinical expressivity. We found that the nested atypical duplications are a possible risk factor for neurodevelopmental phenotypes, particularly for autism spectrum disorder (ASD), speech and language delay, and behavioral abnormalities. In addition, we analyzed genes within the nested region between LCR22B and LCR22D to identify nine genes (ZNF74, KLHL22, MED15, PI4KA, SERPIND1, CRKL, AIFM3, SLC7A4, and BCRP2) with enriched expression in the nervous system, each with unique spatiotemporal patterns in fetal and adult brain tissues. Interestingly, PI4KA is prominently expressed in the brain, and this gene is included either partially or completely in all of our subjects. CONCLUSION: Our findings confirm variable expressivity and incomplete penetrance for atypical nested 22q11.2 duplications and identify genes such as PI4KA to be directly relevant to brain development and disorder. We conclude that further work is needed to elucidate the basis of variable neurodevelopmental phenotypes and to exclude the presence of a second disorder. Our findings contribute to the genotype–phenotype data for atypical nested 22q11.2 duplications, with implications for genetic counseling. John Wiley and Sons Inc. 2019-01-04 /pmc/articles/PMC6393688/ /pubmed/30614210 http://dx.doi.org/10.1002/mgg3.507 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
Woodward, Karen J.
Stampalia, Julie
Vanyai, Hannah
Rijhumal, Hashika
Potts, Kim
Taylor, Fiona
Peverall, Joanne
Grumball, Tanya
Sivamoorthy, Soruba
Alinejad‐Rokny, Hamid
Wray, John
Whitehouse, Andrew
Nagarajan, Lakshmi
Scurlock, Jacqueline
Afchani, Sabine
Edwards, Matthew
Murch, Ashleigh
Beilby, John
Baynam, Gareth
Kiraly‐Borri, Cathy
McKenzie, Fiona
Heng, Julian I. T.
Atypical nested 22q11.2 duplications between LCR22B and LCR22D are associated with neurodevelopmental phenotypes including autism spectrum disorder with incomplete penetrance
title Atypical nested 22q11.2 duplications between LCR22B and LCR22D are associated with neurodevelopmental phenotypes including autism spectrum disorder with incomplete penetrance
title_full Atypical nested 22q11.2 duplications between LCR22B and LCR22D are associated with neurodevelopmental phenotypes including autism spectrum disorder with incomplete penetrance
title_fullStr Atypical nested 22q11.2 duplications between LCR22B and LCR22D are associated with neurodevelopmental phenotypes including autism spectrum disorder with incomplete penetrance
title_full_unstemmed Atypical nested 22q11.2 duplications between LCR22B and LCR22D are associated with neurodevelopmental phenotypes including autism spectrum disorder with incomplete penetrance
title_short Atypical nested 22q11.2 duplications between LCR22B and LCR22D are associated with neurodevelopmental phenotypes including autism spectrum disorder with incomplete penetrance
title_sort atypical nested 22q11.2 duplications between lcr22b and lcr22d are associated with neurodevelopmental phenotypes including autism spectrum disorder with incomplete penetrance
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6393688/
https://www.ncbi.nlm.nih.gov/pubmed/30614210
http://dx.doi.org/10.1002/mgg3.507
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