Mutations in NCAPG2 Cause a Severe Neurodevelopmental Syndrome that Expands the Phenotypic Spectrum of Condensinopathies.

dc.contributor.author

Khan, Tahir N

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Khan, Kamal

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Sadeghpour, Azita

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Reynolds, Hannah

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Perilla, Yezmin

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McDonald, Marie T

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Gallentine, William B

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Baig, Shahid M

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Task Force for Neonatal Genomics

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Davis, Erica E

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Katsanis, Nicholas

dc.date.accessioned

2022-03-23T15:17:27Z

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2022-03-23T15:17:27Z

dc.date.issued

2019-01

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2022-03-23T15:17:26Z

dc.description.abstract

The use of whole-exome and whole-genome sequencing has been a catalyst for a genotype-first approach to diagnostics. Under this paradigm, we have implemented systematic sequencing of neonates and young children with a suspected genetic disorder. Here, we report on two families with recessive mutations in NCAPG2 and overlapping clinical phenotypes that include severe neurodevelopmental defects, failure to thrive, ocular abnormalities, and defects in urogenital and limb morphogenesis. NCAPG2 encodes a member of the condensin II complex, necessary for the condensation of chromosomes prior to cell division. Consistent with a causal role for NCAPG2, we found abnormal chromosome condensation, augmented anaphase chromatin-bridge formation, and micronuclei in daughter cells of proband skin fibroblasts. To test the functional relevance of the discovered variants, we generated an ncapg2 zebrafish model. Morphants displayed clinically relevant phenotypes, such as renal anomalies, microcephaly, and concomitant increases in apoptosis and altered mitotic progression. These could be rescued by wild-type but not mutant human NCAPG2 mRNA and were recapitulated in CRISPR-Cas9 F0 mutants. Finally, we noted that the individual with a complex urogenital defect also harbored a heterozygous NPHP1 deletion, a common contributor to nephronophthisis. To test whether sensitization at the NPHP1 locus might contribute to a more severe renal phenotype, we co-suppressed nphp1 and ncapg2, which resulted in significantly more dysplastic renal tubules in zebrafish larvae. Together, our data suggest that impaired function of NCAPG2 results in a severe condensinopathy, and they highlight the potential utility of examining candidate pathogenic lesions beyond the primary disease locus.

dc.identifier

S0002-9297(18)30425-7

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0002-9297

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1537-6605

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https://hdl.handle.net/10161/24582

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eng

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Elsevier BV

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American journal of human genetics

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10.1016/j.ajhg.2018.11.017

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Task Force for Neonatal Genomics

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Animals

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Zebrafish

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Humans

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Abnormalities, Multiple

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Syndrome

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Multiprotein Complexes

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Adaptor Proteins, Signal Transducing

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Cytoskeletal Proteins

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DNA-Binding Proteins

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Zebrafish Proteins

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Membrane Proteins

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Chromosomal Proteins, Non-Histone

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Pedigree

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Phenotype

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Mutation

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Child

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Child, Preschool

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Infant

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Infant, Newborn

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Female

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Male

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Adenosine Triphosphatases

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Neurodevelopmental Disorders

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Mutations in NCAPG2 Cause a Severe Neurodevelopmental Syndrome that Expands the Phenotypic Spectrum of Condensinopathies.

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Journal article

duke.contributor.orcid

Davis, Erica E|0000-0002-2412-8397

pubs.begin-page

94

pubs.end-page

111

pubs.issue

1

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Duke

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School of Medicine

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School of Nursing

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Faculty

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Nursing

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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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Cell Biology

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Neurobiology

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Obstetrics and Gynecology

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Pathology

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Pediatrics

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Surgery

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Pediatrics, Medical Genetics

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Pediatrics, Neonatology

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Pediatrics, Neurology

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Surgery, Plastic, Maxillofacial, and Oral Surgery

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Surgery, Urology

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Duke Cancer Institute

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Institutes and Provost's Academic Units

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University Institutes and Centers

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Social Science Research Institute

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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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Neurology

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Initiatives

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Duke Science & Society

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Population Health Sciences

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Duke Innovation & Entrepreneurship

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Head and Neck Surgery & Communication Sciences

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Pediatrics, Transplant and Cellular Therapy

pubs.publication-status

Published

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104

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