Cargando…

Heterozygous loss-of-function SMC3 variants are associated with variable and incompletely penetrant growth and developmental features

Heterozygous missense variants and in-frame indels in SMC3 are a cause of Cornelia de Lange syndrome (CdLS), marked by intellectual disability, growth deficiency, and dysmorphism, via an apparent dominant-negative mechanism. However, the spectrum of manifestations associated with SMC3 loss-of-functi...

Descripción completa

Detalles Bibliográficos
Autores principales: Ansari, Morad, Faour, Kamli N. W., Shimamura, Akiko, Grimes, Graeme, Kao, Emeline M., Denhoff, Erica R., Blatnik, Ana, Ben-Isvy, Daniel, Wang, Lily, Helm, Benjamin M., Firth, Helen, Breman, Amy M., Bijlsma, Emilia K., Iwata-Otsubo, Aiko, de Ravel, Thomy J.L., Fusaro, Vincent, Fryer, Alan, Nykamp, Keith, Stühn, Lara G., Haack, Tobias B., Korenke, G. Christoph, Constantinou, Panayiotis, Bujakowska, Kinga M., Low, Karen J., Place, Emily, Humberson, Jennifer, Napier, Melanie P., Hoffman, Jessica, Juusola, Jane, Deardorff, Matthew A., Shao, Wanqing, Rockowitz, Shira, Krantz, Ian, Kaur, Maninder, Raible, Sarah, Kliesch, Sabine, Singer-Berk, Moriel, Groopman, Emily, DiTroia, Stephanie, Ballal, Sonia, Srivastava, Siddharth, Rothfelder, Kathrin, Biskup, Saskia, Rzasa, Jessica, Kerkhof, Jennifer, McConkey, Haley, O’Donnell-Luria, Anne, Sadikovic, Bekim, Hilton, Sarah, Banka, Siddharth, Tüttelmann, Frank, Conrad, Donald, Talkowski, Michael E., FitzPatrick, David R., Boone, Philip M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10557843/
https://www.ncbi.nlm.nih.gov/pubmed/37808847
http://dx.doi.org/10.1101/2023.09.27.23294269
_version_ 1785117158910459904
author Ansari, Morad
Faour, Kamli N. W.
Shimamura, Akiko
Grimes, Graeme
Kao, Emeline M.
Denhoff, Erica R.
Blatnik, Ana
Ben-Isvy, Daniel
Wang, Lily
Helm, Benjamin M.
Firth, Helen
Breman, Amy M.
Bijlsma, Emilia K.
Iwata-Otsubo, Aiko
de Ravel, Thomy J.L.
Fusaro, Vincent
Fryer, Alan
Nykamp, Keith
Stühn, Lara G.
Haack, Tobias B.
Korenke, G. Christoph
Constantinou, Panayiotis
Bujakowska, Kinga M.
Low, Karen J.
Place, Emily
Humberson, Jennifer
Napier, Melanie P.
Hoffman, Jessica
Juusola, Jane
Deardorff, Matthew A.
Shao, Wanqing
Rockowitz, Shira
Krantz, Ian
Kaur, Maninder
Raible, Sarah
Kliesch, Sabine
Singer-Berk, Moriel
Groopman, Emily
DiTroia, Stephanie
Ballal, Sonia
Srivastava, Siddharth
Rothfelder, Kathrin
Biskup, Saskia
Rzasa, Jessica
Kerkhof, Jennifer
McConkey, Haley
O’Donnell-Luria, Anne
Sadikovic, Bekim
Hilton, Sarah
Banka, Siddharth
Tüttelmann, Frank
Conrad, Donald
Talkowski, Michael E.
FitzPatrick, David R.
Boone, Philip M.
author_facet Ansari, Morad
Faour, Kamli N. W.
Shimamura, Akiko
Grimes, Graeme
Kao, Emeline M.
Denhoff, Erica R.
Blatnik, Ana
Ben-Isvy, Daniel
Wang, Lily
Helm, Benjamin M.
Firth, Helen
Breman, Amy M.
Bijlsma, Emilia K.
Iwata-Otsubo, Aiko
de Ravel, Thomy J.L.
Fusaro, Vincent
Fryer, Alan
Nykamp, Keith
Stühn, Lara G.
Haack, Tobias B.
Korenke, G. Christoph
Constantinou, Panayiotis
Bujakowska, Kinga M.
Low, Karen J.
Place, Emily
Humberson, Jennifer
Napier, Melanie P.
Hoffman, Jessica
Juusola, Jane
Deardorff, Matthew A.
Shao, Wanqing
Rockowitz, Shira
Krantz, Ian
Kaur, Maninder
Raible, Sarah
Kliesch, Sabine
Singer-Berk, Moriel
Groopman, Emily
DiTroia, Stephanie
Ballal, Sonia
Srivastava, Siddharth
Rothfelder, Kathrin
Biskup, Saskia
Rzasa, Jessica
Kerkhof, Jennifer
McConkey, Haley
O’Donnell-Luria, Anne
Sadikovic, Bekim
Hilton, Sarah
Banka, Siddharth
Tüttelmann, Frank
Conrad, Donald
Talkowski, Michael E.
FitzPatrick, David R.
Boone, Philip M.
author_sort Ansari, Morad
collection PubMed
description Heterozygous missense variants and in-frame indels in SMC3 are a cause of Cornelia de Lange syndrome (CdLS), marked by intellectual disability, growth deficiency, and dysmorphism, via an apparent dominant-negative mechanism. However, the spectrum of manifestations associated with SMC3 loss-of-function variants has not been reported, leading to hypotheses of alternative phenotypes or even developmental lethality. We used matchmaking servers, patient registries, and other resources to identify individuals with heterozygous, predicted loss-of-function (pLoF) variants in SMC3, and analyzed population databases to characterize mutational intolerance in this gene. Here, we show that SMC3 behaves as an archetypal haploinsufficient gene: it is highly constrained against pLoF variants, strongly depleted for missense variants, and pLoF variants are associated with a range of developmental phenotypes. Among 13 individuals with SMC3 pLoF variants, phenotypes were variable but coalesced on low growth parameters, developmental delay/intellectual disability, and dysmorphism reminiscent of atypical CdLS. Comparisons to individuals with SMC3 missense/in-frame indel variants demonstrated a milder presentation in pLoF carriers. Furthermore, several individuals harboring pLoF variants in SMC3 were nonpenetrant for growth, developmental, and/or dysmorphic features, some instead having intriguing symptomatologies with rational biological links to SMC3 including bone marrow failure, acute myeloid leukemia, and Coats retinal vasculopathy. Analyses of transcriptomic and epigenetic data suggest that SMC3 pLoF variants reduce SMC3 expression but do not result in a blood DNA methylation signature clustering with that of CdLS, and that the global transcriptional signature of SMC3 loss is model-dependent. Our finding of substantial population-scale LoF intolerance in concert with variable penetrance in subjects with SMC3 pLoF variants expands the scope of cohesinopathies, informs on their allelic architecture, and suggests the existence of additional clearly LoF-constrained genes whose disease links will be confirmed only by multi-layered genomic data paired with careful phenotyping.
format Online
Article
Text
id pubmed-10557843
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Cold Spring Harbor Laboratory
record_format MEDLINE/PubMed
spelling pubmed-105578432023-10-07 Heterozygous loss-of-function SMC3 variants are associated with variable and incompletely penetrant growth and developmental features Ansari, Morad Faour, Kamli N. W. Shimamura, Akiko Grimes, Graeme Kao, Emeline M. Denhoff, Erica R. Blatnik, Ana Ben-Isvy, Daniel Wang, Lily Helm, Benjamin M. Firth, Helen Breman, Amy M. Bijlsma, Emilia K. Iwata-Otsubo, Aiko de Ravel, Thomy J.L. Fusaro, Vincent Fryer, Alan Nykamp, Keith Stühn, Lara G. Haack, Tobias B. Korenke, G. Christoph Constantinou, Panayiotis Bujakowska, Kinga M. Low, Karen J. Place, Emily Humberson, Jennifer Napier, Melanie P. Hoffman, Jessica Juusola, Jane Deardorff, Matthew A. Shao, Wanqing Rockowitz, Shira Krantz, Ian Kaur, Maninder Raible, Sarah Kliesch, Sabine Singer-Berk, Moriel Groopman, Emily DiTroia, Stephanie Ballal, Sonia Srivastava, Siddharth Rothfelder, Kathrin Biskup, Saskia Rzasa, Jessica Kerkhof, Jennifer McConkey, Haley O’Donnell-Luria, Anne Sadikovic, Bekim Hilton, Sarah Banka, Siddharth Tüttelmann, Frank Conrad, Donald Talkowski, Michael E. FitzPatrick, David R. Boone, Philip M. medRxiv Article Heterozygous missense variants and in-frame indels in SMC3 are a cause of Cornelia de Lange syndrome (CdLS), marked by intellectual disability, growth deficiency, and dysmorphism, via an apparent dominant-negative mechanism. However, the spectrum of manifestations associated with SMC3 loss-of-function variants has not been reported, leading to hypotheses of alternative phenotypes or even developmental lethality. We used matchmaking servers, patient registries, and other resources to identify individuals with heterozygous, predicted loss-of-function (pLoF) variants in SMC3, and analyzed population databases to characterize mutational intolerance in this gene. Here, we show that SMC3 behaves as an archetypal haploinsufficient gene: it is highly constrained against pLoF variants, strongly depleted for missense variants, and pLoF variants are associated with a range of developmental phenotypes. Among 13 individuals with SMC3 pLoF variants, phenotypes were variable but coalesced on low growth parameters, developmental delay/intellectual disability, and dysmorphism reminiscent of atypical CdLS. Comparisons to individuals with SMC3 missense/in-frame indel variants demonstrated a milder presentation in pLoF carriers. Furthermore, several individuals harboring pLoF variants in SMC3 were nonpenetrant for growth, developmental, and/or dysmorphic features, some instead having intriguing symptomatologies with rational biological links to SMC3 including bone marrow failure, acute myeloid leukemia, and Coats retinal vasculopathy. Analyses of transcriptomic and epigenetic data suggest that SMC3 pLoF variants reduce SMC3 expression but do not result in a blood DNA methylation signature clustering with that of CdLS, and that the global transcriptional signature of SMC3 loss is model-dependent. Our finding of substantial population-scale LoF intolerance in concert with variable penetrance in subjects with SMC3 pLoF variants expands the scope of cohesinopathies, informs on their allelic architecture, and suggests the existence of additional clearly LoF-constrained genes whose disease links will be confirmed only by multi-layered genomic data paired with careful phenotyping. Cold Spring Harbor Laboratory 2023-09-28 /pmc/articles/PMC10557843/ /pubmed/37808847 http://dx.doi.org/10.1101/2023.09.27.23294269 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Ansari, Morad
Faour, Kamli N. W.
Shimamura, Akiko
Grimes, Graeme
Kao, Emeline M.
Denhoff, Erica R.
Blatnik, Ana
Ben-Isvy, Daniel
Wang, Lily
Helm, Benjamin M.
Firth, Helen
Breman, Amy M.
Bijlsma, Emilia K.
Iwata-Otsubo, Aiko
de Ravel, Thomy J.L.
Fusaro, Vincent
Fryer, Alan
Nykamp, Keith
Stühn, Lara G.
Haack, Tobias B.
Korenke, G. Christoph
Constantinou, Panayiotis
Bujakowska, Kinga M.
Low, Karen J.
Place, Emily
Humberson, Jennifer
Napier, Melanie P.
Hoffman, Jessica
Juusola, Jane
Deardorff, Matthew A.
Shao, Wanqing
Rockowitz, Shira
Krantz, Ian
Kaur, Maninder
Raible, Sarah
Kliesch, Sabine
Singer-Berk, Moriel
Groopman, Emily
DiTroia, Stephanie
Ballal, Sonia
Srivastava, Siddharth
Rothfelder, Kathrin
Biskup, Saskia
Rzasa, Jessica
Kerkhof, Jennifer
McConkey, Haley
O’Donnell-Luria, Anne
Sadikovic, Bekim
Hilton, Sarah
Banka, Siddharth
Tüttelmann, Frank
Conrad, Donald
Talkowski, Michael E.
FitzPatrick, David R.
Boone, Philip M.
Heterozygous loss-of-function SMC3 variants are associated with variable and incompletely penetrant growth and developmental features
title Heterozygous loss-of-function SMC3 variants are associated with variable and incompletely penetrant growth and developmental features
title_full Heterozygous loss-of-function SMC3 variants are associated with variable and incompletely penetrant growth and developmental features
title_fullStr Heterozygous loss-of-function SMC3 variants are associated with variable and incompletely penetrant growth and developmental features
title_full_unstemmed Heterozygous loss-of-function SMC3 variants are associated with variable and incompletely penetrant growth and developmental features
title_short Heterozygous loss-of-function SMC3 variants are associated with variable and incompletely penetrant growth and developmental features
title_sort heterozygous loss-of-function smc3 variants are associated with variable and incompletely penetrant growth and developmental features
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10557843/
https://www.ncbi.nlm.nih.gov/pubmed/37808847
http://dx.doi.org/10.1101/2023.09.27.23294269
work_keys_str_mv AT ansarimorad heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT faourkamlinw heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT shimamuraakiko heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT grimesgraeme heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT kaoemelinem heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT denhoffericar heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT blatnikana heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT benisvydaniel heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT wanglily heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT helmbenjaminm heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT firthhelen heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT bremanamym heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT bijlsmaemiliak heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT iwataotsuboaiko heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT deravelthomyjl heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT fusarovincent heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT fryeralan heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT nykampkeith heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT stuhnlarag heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT haacktobiasb heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT korenkegchristoph heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT constantinoupanayiotis heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT bujakowskakingam heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT lowkarenj heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT placeemily heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT humbersonjennifer heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT napiermelaniep heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT hoffmanjessica heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT juusolajane heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT deardorffmatthewa heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT shaowanqing heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT rockowitzshira heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT krantzian heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT kaurmaninder heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT raiblesarah heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT klieschsabine heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT singerberkmoriel heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT groopmanemily heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT ditroiastephanie heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT ballalsonia heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT srivastavasiddharth heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT rothfelderkathrin heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT biskupsaskia heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT rzasajessica heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT kerkhofjennifer heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT mcconkeyhaley heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT odonnellluriaanne heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT sadikovicbekim heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT hiltonsarah heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT bankasiddharth heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT tuttelmannfrank heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT conraddonald heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT talkowskimichaele heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT fitzpatrickdavidr heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures
AT boonephilipm heterozygouslossoffunctionsmc3variantsareassociatedwithvariableandincompletelypenetrantgrowthanddevelopmentalfeatures