Somatic uniparental disomy of Chromosome 16p in hemimegalencephaly.

dc.contributor.author

Griffin, Nicole G

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Cronin, Kenneth D

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Walley, Nicole M

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Hulette, Christine M

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Grant, Gerald A

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Mikati, Mohamad A

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LaBreche, Heather G

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Rehder, Catherine W

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Allen, Andrew S

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Crino, Peter B

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Heinzen, Erin L

dc.date.accessioned

2022-09-30T18:02:07Z

dc.date.available

2022-09-30T18:02:07Z

dc.date.issued

2017-09

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2022-09-30T18:01:10Z

dc.description.abstract

Hemimegalencephaly (HME) is a heterogeneous cortical malformation characterized by enlargement of one cerebral hemisphere. Somatic variants in mammalian target of rapamycin (mTOR) regulatory genes have been implicated in some HME cases; however, ∼70% have no identified genetic etiology. Here, we screened two HME patients to identify disease-causing somatic variants. DNA from leukocytes, buccal swabs, and surgically resected brain tissue from two HME patients were screened for somatic variants using genome-wide genotyping arrays or sequencing of the protein-coding regions of the genome. Functional studies were performed to evaluate the molecular consequences of candidate disease-causing variants. Both HME patients evaluated were found to have likely disease-causing variants in DNA extracted from brain tissue but not in buccal swab or leukocyte DNA, consistent with a somatic mutational mechanism. In the first case, a previously identified disease-causing somatic single nucleotide in MTOR was identified. In the second case, we detected an overrepresentation of the alleles inherited from the mother on Chromosome 16 in brain tissue DNA only, indicative of somatic uniparental disomy (UPD) of the p-arm of Chromosome 16. Using methylation analyses, an imprinted locus on 16p spanning ZNF597 was identified, which results in increased expression of ZNF597 mRNA and protein in the brain tissue of the second case. Enhanced mTOR signaling was observed in tissue specimens from both patients. We speculate that overexpression of maternally expressed ZNF597 led to aberrant hemispheric development in the patient with somatic UPD of Chromosome 16p possibly through modulation of mTOR signaling.

dc.identifier

mcs.a001735

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2373-2873

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2373-2873

dc.identifier.uri

https://hdl.handle.net/10161/25902

dc.language

eng

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Cold Spring Harbor Laboratory

dc.relation.ispartof

Cold Spring Harbor molecular case studies

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10.1101/mcs.a001735

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Brain

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Chromosomes

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Chromosomes, Human, Pair 16

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Humans

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Uniparental Disomy

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DNA

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DNA Methylation

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Genomic Imprinting

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Genotype

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Alleles

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Child, Preschool

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Infant

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Female

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Hemimegalencephaly

dc.title

Somatic uniparental disomy of Chromosome 16p in hemimegalencephaly.

dc.type

Journal article

duke.contributor.orcid

Grant, Gerald A|0000-0002-2651-4603

duke.contributor.orcid

Mikati, Mohamad A|0000-0003-0363-8715

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Allen, Andrew S|0000-0002-7232-2143

pubs.begin-page

a001735

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5

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Duke

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School of Medicine

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Basic Science Departments

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Clinical Science Departments

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Institutes and Centers

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Biostatistics & Bioinformatics

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Neurobiology

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Pathology

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Pediatrics

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Pediatrics, Neurology

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Duke Cancer Institute

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Duke Clinical Research Institute

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Institutes and Provost's Academic Units

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University Institutes and Centers

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Duke Institute for Brain Sciences

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Duke-UNC Center for Brain Imaging and Analysis

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Initiatives

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Duke Science & Society

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Neurosurgery

pubs.publication-status

Published

pubs.volume

3

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