4.6 Article

CTCF variants in 39 individuals with a variable neurodevelopmental disorder broaden the mutational and clinical spectrum

期刊

GENETICS IN MEDICINE
卷 21, 期 12, 页码 2723-2733

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/s41436-019-0585-z

关键词

CTCF; neurodevelopmental disorders; Drosophila melanogaster; intellectual disability; chromatin organization

资金

  1. German Research Foundation [INST 410/91-1 FUGG, ZW184/1-2, ZW184/3-1, 270949263/GRK2162]
  2. Interdisciplinary Center for Clinical Research in Erlangen
  3. Estonian Research Council [PUT355, PRG471, PUTJD827]
  4. Wellcome Trust
  5. Health Innovation Challenge Fund [HICF-1009-003]
  6. Wellcome
  7. Department of Health
  8. Wellcome Sanger Institute [WT098051]
  9. National Institute for Health Research, through the Comprehensive Clinical Research Network
  10. National Human Genome Research Institute [UM1 HG008900]
  11. National Heart, Lung, and Blood Institute under the Trans-Omics for Precision Medicine (TOPMed) program
  12. National Eye Institute
  13. [T32GM007748]

向作者/读者索取更多资源

Purpose: Pathogenic variants in the chromatin organizer CTCF were previously reported in seven individuals with a neurodevelopmental disorder (NDD). Methods: Through international collaboration we collected data from 39 subjects with variants in CTCF. We performed transcriptome analysis on RNA from blood samples and utilized Drosophila melanogaster to investigate the impact of Ctcf dosage alteration on nervous system development and function. Results: The individuals in our cohort carried 2 deletions, 8 likely gene-disruptive, 2 splice-site, and 20 different missense variants, most of them de novo. Two cases were familial. The associated phenotype was of variable severity extending from mild developmental delay or normal IQ to severe intellectual disability. Feeding difficulties and behavioral abnormalities were common, and variable other findings including growth restriction and cardiac defects were observed. RNA-sequencing in five individuals identified 3828 deregulated genes enriched for known NDD genes and biological processes such as transcriptional regulation. Ctcf dosage alteration in Drosophila resulted in impaired gross neurological functioning and learning and memory deficits. Conclusion: We significantly broaden the mutational and clinical spectrum of CTCF-associated NDDs. Our data shed light onto the functional role of CTCF by identifying deregulated genes and show that Ctcf alterations result in nervous system defects in Drosophila.

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