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Assortative mating and parental genetic relatedness drive the pathogenicity of variably expressive variants

We examined more than 38,000 spouse pairs from four neurodevelopmental disease cohorts and the UK Biobank to identify phenotypic and genetic patterns in parents associated with neurodevelopmental disease risk in children. We identified correlations between six phenotypes in parents and children, inc...

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Autores principales: Smolen, Corrine, Jensen, Matthew, Dyer, Lisa, Pizzo, Lucilla, Tyryshkina, Anastasia, Banerjee, Deepro, Rohan, Laura, Huber, Emily, El Khattabi, Laila, Prontera, Paolo, Caberg, Jean-Hubert, Van Dijck, Anke, Schwartz, Charles, Faivre, Laurence, Callier, Patrick, Mosca-Boidron, Anne-Laure, Lefebvre, Mathilde, Pope, Kate, Snell, Penny, Lockhart, Paul J., Castiglia, Lucia, Galesi, Ornella, Avola, Emanuela, Mattina, Teresa, Fichera, Marco, Mandarà, Giuseppa Maria Luana, Bruccheri, Maria Grazia, Pichon, Olivier, Le Caignec, Cedric, Stoeva, Radka, Cuinat, Silvestre, Mercier, Sandra, Bénéteau, Claire, Blesson, Sophie, Nordsletten, Ashley, Martin-Coignard, Dominique, Sistermans, Erik, Kooy, R. Frank, Amor, David J., Romano, Corrado, Isidor, Bertrand, Juusola, Jane, Girirajan, Santhosh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10246151/
https://www.ncbi.nlm.nih.gov/pubmed/37292616
http://dx.doi.org/10.1101/2023.05.18.23290169
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author Smolen, Corrine
Jensen, Matthew
Dyer, Lisa
Pizzo, Lucilla
Tyryshkina, Anastasia
Banerjee, Deepro
Rohan, Laura
Huber, Emily
El Khattabi, Laila
Prontera, Paolo
Caberg, Jean-Hubert
Van Dijck, Anke
Schwartz, Charles
Faivre, Laurence
Callier, Patrick
Mosca-Boidron, Anne-Laure
Lefebvre, Mathilde
Pope, Kate
Snell, Penny
Lockhart, Paul J.
Castiglia, Lucia
Galesi, Ornella
Avola, Emanuela
Mattina, Teresa
Fichera, Marco
Mandarà, Giuseppa Maria Luana
Bruccheri, Maria Grazia
Pichon, Olivier
Le Caignec, Cedric
Stoeva, Radka
Cuinat, Silvestre
Mercier, Sandra
Bénéteau, Claire
Blesson, Sophie
Nordsletten, Ashley
Martin-Coignard, Dominique
Sistermans, Erik
Kooy, R. Frank
Amor, David J.
Romano, Corrado
Isidor, Bertrand
Juusola, Jane
Girirajan, Santhosh
author_facet Smolen, Corrine
Jensen, Matthew
Dyer, Lisa
Pizzo, Lucilla
Tyryshkina, Anastasia
Banerjee, Deepro
Rohan, Laura
Huber, Emily
El Khattabi, Laila
Prontera, Paolo
Caberg, Jean-Hubert
Van Dijck, Anke
Schwartz, Charles
Faivre, Laurence
Callier, Patrick
Mosca-Boidron, Anne-Laure
Lefebvre, Mathilde
Pope, Kate
Snell, Penny
Lockhart, Paul J.
Castiglia, Lucia
Galesi, Ornella
Avola, Emanuela
Mattina, Teresa
Fichera, Marco
Mandarà, Giuseppa Maria Luana
Bruccheri, Maria Grazia
Pichon, Olivier
Le Caignec, Cedric
Stoeva, Radka
Cuinat, Silvestre
Mercier, Sandra
Bénéteau, Claire
Blesson, Sophie
Nordsletten, Ashley
Martin-Coignard, Dominique
Sistermans, Erik
Kooy, R. Frank
Amor, David J.
Romano, Corrado
Isidor, Bertrand
Juusola, Jane
Girirajan, Santhosh
author_sort Smolen, Corrine
collection PubMed
description We examined more than 38,000 spouse pairs from four neurodevelopmental disease cohorts and the UK Biobank to identify phenotypic and genetic patterns in parents associated with neurodevelopmental disease risk in children. We identified correlations between six phenotypes in parents and children, including correlations of clinical diagnoses such as obsessive-compulsive disorder (R=0.31-0.49, p<0.001), and two measures of sub-clinical autism features in parents affecting several autism severity measures in children, such as bi-parental mean Social Responsiveness Scale (SRS) scores affecting proband SRS scores (regression coefficient=0.11, p=0.003). We further describe patterns of phenotypic and genetic similarity between spouses, where spouses show both within- and cross-disorder correlations for seven neurological and psychiatric phenotypes, including a within-disorder correlation for depression (R=0.25-0.72, p<0.001) and a cross-disorder correlation between schizophrenia and personality disorder (R=0.20-0.57, p<0.001). Further, these spouses with similar phenotypes were significantly correlated for rare variant burden (R=0.07-0.57, p<0.0001). We propose that assortative mating on these features may drive the increases in genetic risk over generations and the appearance of “genetic anticipation” associated with many variably expressive variants. We further identified parental relatedness as a risk factor for neurodevelopmental disorders through its inverse correlations with burden and pathogenicity of rare variants and propose that parental relatedness drives disease risk by increasing genome-wide homozygosity in children (R=0.09-0.30, p<0.001). Our results highlight the utility of assessing parent phenotypes and genotypes in predicting features in children carrying variably expressive variants and counseling families carrying these variants.
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spelling pubmed-102461512023-06-08 Assortative mating and parental genetic relatedness drive the pathogenicity of variably expressive variants Smolen, Corrine Jensen, Matthew Dyer, Lisa Pizzo, Lucilla Tyryshkina, Anastasia Banerjee, Deepro Rohan, Laura Huber, Emily El Khattabi, Laila Prontera, Paolo Caberg, Jean-Hubert Van Dijck, Anke Schwartz, Charles Faivre, Laurence Callier, Patrick Mosca-Boidron, Anne-Laure Lefebvre, Mathilde Pope, Kate Snell, Penny Lockhart, Paul J. Castiglia, Lucia Galesi, Ornella Avola, Emanuela Mattina, Teresa Fichera, Marco Mandarà, Giuseppa Maria Luana Bruccheri, Maria Grazia Pichon, Olivier Le Caignec, Cedric Stoeva, Radka Cuinat, Silvestre Mercier, Sandra Bénéteau, Claire Blesson, Sophie Nordsletten, Ashley Martin-Coignard, Dominique Sistermans, Erik Kooy, R. Frank Amor, David J. Romano, Corrado Isidor, Bertrand Juusola, Jane Girirajan, Santhosh medRxiv Article We examined more than 38,000 spouse pairs from four neurodevelopmental disease cohorts and the UK Biobank to identify phenotypic and genetic patterns in parents associated with neurodevelopmental disease risk in children. We identified correlations between six phenotypes in parents and children, including correlations of clinical diagnoses such as obsessive-compulsive disorder (R=0.31-0.49, p<0.001), and two measures of sub-clinical autism features in parents affecting several autism severity measures in children, such as bi-parental mean Social Responsiveness Scale (SRS) scores affecting proband SRS scores (regression coefficient=0.11, p=0.003). We further describe patterns of phenotypic and genetic similarity between spouses, where spouses show both within- and cross-disorder correlations for seven neurological and psychiatric phenotypes, including a within-disorder correlation for depression (R=0.25-0.72, p<0.001) and a cross-disorder correlation between schizophrenia and personality disorder (R=0.20-0.57, p<0.001). Further, these spouses with similar phenotypes were significantly correlated for rare variant burden (R=0.07-0.57, p<0.0001). We propose that assortative mating on these features may drive the increases in genetic risk over generations and the appearance of “genetic anticipation” associated with many variably expressive variants. We further identified parental relatedness as a risk factor for neurodevelopmental disorders through its inverse correlations with burden and pathogenicity of rare variants and propose that parental relatedness drives disease risk by increasing genome-wide homozygosity in children (R=0.09-0.30, p<0.001). Our results highlight the utility of assessing parent phenotypes and genotypes in predicting features in children carrying variably expressive variants and counseling families carrying these variants. Cold Spring Harbor Laboratory 2023-05-26 /pmc/articles/PMC10246151/ /pubmed/37292616 http://dx.doi.org/10.1101/2023.05.18.23290169 Text en https://creativecommons.org/licenses/by-nd/4.0/This work is licensed under a Creative Commons Attribution-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, and only so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Smolen, Corrine
Jensen, Matthew
Dyer, Lisa
Pizzo, Lucilla
Tyryshkina, Anastasia
Banerjee, Deepro
Rohan, Laura
Huber, Emily
El Khattabi, Laila
Prontera, Paolo
Caberg, Jean-Hubert
Van Dijck, Anke
Schwartz, Charles
Faivre, Laurence
Callier, Patrick
Mosca-Boidron, Anne-Laure
Lefebvre, Mathilde
Pope, Kate
Snell, Penny
Lockhart, Paul J.
Castiglia, Lucia
Galesi, Ornella
Avola, Emanuela
Mattina, Teresa
Fichera, Marco
Mandarà, Giuseppa Maria Luana
Bruccheri, Maria Grazia
Pichon, Olivier
Le Caignec, Cedric
Stoeva, Radka
Cuinat, Silvestre
Mercier, Sandra
Bénéteau, Claire
Blesson, Sophie
Nordsletten, Ashley
Martin-Coignard, Dominique
Sistermans, Erik
Kooy, R. Frank
Amor, David J.
Romano, Corrado
Isidor, Bertrand
Juusola, Jane
Girirajan, Santhosh
Assortative mating and parental genetic relatedness drive the pathogenicity of variably expressive variants
title Assortative mating and parental genetic relatedness drive the pathogenicity of variably expressive variants
title_full Assortative mating and parental genetic relatedness drive the pathogenicity of variably expressive variants
title_fullStr Assortative mating and parental genetic relatedness drive the pathogenicity of variably expressive variants
title_full_unstemmed Assortative mating and parental genetic relatedness drive the pathogenicity of variably expressive variants
title_short Assortative mating and parental genetic relatedness drive the pathogenicity of variably expressive variants
title_sort assortative mating and parental genetic relatedness drive the pathogenicity of variably expressive variants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10246151/
https://www.ncbi.nlm.nih.gov/pubmed/37292616
http://dx.doi.org/10.1101/2023.05.18.23290169
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