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

dc.contributor.authorAnsari, Morad
dc.contributor.authorFaour, Kamli N. W.
dc.contributor.authorShimamura, Akiko
dc.contributor.authorGrimes, Graeme
dc.contributor.authorKao, Emeline M.
dc.contributor.authorDenhoff, Erica R.
dc.contributor.authorBlatnik, Ana
dc.contributor.authorBen-Isvy, Daniel
dc.contributor.authorWang, Lily
dc.contributor.authorHelm, Benjamin M.
dc.contributor.authorFirth, Helen
dc.contributor.authorBreman, Amy M.
dc.contributor.authorBijlsma, Emilia K.
dc.contributor.authorIwata-Otsubo, Aiko
dc.contributor.authorde Ravel, Thomy J. L.
dc.contributor.authorFusaro, Vincent
dc.contributor.authorFryer, Alan
dc.contributor.authorNykamp, Keith
dc.contributor.authorStühn, Lara G.
dc.contributor.authorHaack, Tobias B.
dc.contributor.authorKorenke, G. Christoph
dc.contributor.authorConstantinou, Panayiotis
dc.contributor.authorBujakowska, Kinga M.
dc.contributor.authorLow, Karen J.
dc.contributor.authorPlace, Emily
dc.contributor.authorHumberson, Jennifer
dc.contributor.authorNapier, Melanie P.
dc.contributor.authorHoffman, Jessica
dc.contributor.authorJuusola, Jane
dc.contributor.authorDeardorff, Matthew A.
dc.contributor.authorShao, Wanqing
dc.contributor.authorRockowitz, Shira
dc.contributor.authorKrantz, Ian
dc.contributor.authorKaur, Maninder
dc.contributor.authorRaible, Sarah
dc.contributor.authorKliesch, Sabine
dc.contributor.authorSinger-Berk, Moriel
dc.contributor.authorGroopman, Emily
dc.contributor.authorDiTroia, Stephanie
dc.contributor.authorBallal, Sonia
dc.contributor.authorSrivastava, Siddharth
dc.contributor.authorRothfelder, Kathrin
dc.contributor.authorBiskup, Saskia
dc.contributor.authorRzasa, Jessica
dc.contributor.authorKerkhof, Jennifer
dc.contributor.authorMcConkey, Haley
dc.contributor.authorO'Donnell-Luria, Anne
dc.contributor.authorSadikovic, Bekim
dc.contributor.authorHilton, Sarah
dc.contributor.authorBanka, Siddharth
dc.contributor.authorTüttelmann, Frank
dc.contributor.authorConrad, Donald
dc.contributor.authorTalkowski, Michael E.
dc.contributor.authorFitzPatrick, David R.
dc.contributor.authorBoone, Philip M.
dc.contributor.departmentMedical and Molecular Genetics, School of Medicine
dc.date.accessioned2024-03-28T12:10:54Z
dc.date.available2024-03-28T12:10:54Z
dc.date.issued2023-09-28
dc.description.abstractHeterozygous 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.
dc.eprint.versionPre-Print
dc.identifier.citationAnsari M, Faour KNW, Shimamura A, et al. Heterozygous loss-of-function SMC3 variants are associated with variable and incompletely penetrant growth and developmental features. Preprint. medRxiv. 2023;2023.09.27.23294269. Published 2023 Sep 28. doi:10.1101/2023.09.27.23294269
dc.identifier.urihttps://hdl.handle.net/1805/39578
dc.language.isoen_US
dc.publishermedRxiv
dc.relation.isversionof10.1101/2023.09.27.23294269
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 Internationalen
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/
dc.sourcePMC
dc.subjectCornelia de Lange syndrome (CdLS)
dc.subjectCohesin
dc.subjectLoss-of-function
dc.titleHeterozygous loss-of-function SMC3 variants are associated with variable and incompletely penetrant growth and developmental features
dc.typeArticle
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