4.7 Article

A novel RLIM/RNF12 variant disrupts protein stability and function to cause severe Tonne-Kalscheuer syndrome

Journal

SCIENTIFIC REPORTS
Volume 11, Issue 1, Pages -

Publisher

NATURE RESEARCH
DOI: 10.1038/s41598-021-88911-3

Keywords

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Funding

  1. Wellcome Trust/Royal Society Sir Henry Dale Fellowship [211209/Z/18/Z]
  2. Medical Research Council New Investigator Research Grant [MR/N000609/1]
  3. Wellcome Trust PhD studentship
  4. MRC-PPU prize studentship
  5. Genome Canada
  6. Ontario Genomics Institute [OGI-147]
  7. Canadian Institutes of Health Research
  8. Ontario Research Fund
  9. Genome Alberta
  10. Genome British Columbia
  11. Genome Quebec
  12. Children's Hospital of Eastern Ontario Foundation
  13. Luminesce Alliance-Innovation for Children's Health
  14. NSW Government
  15. Wellcome Trust [211209/Z/18/Z] Funding Source: Wellcome Trust
  16. MRC [MR/N000609/1] Funding Source: UKRI

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TOKAS is an X-linked intellectual disability syndrome caused by variants in the gene encoding RLIM. A novel missense variant in RLIM disrupts protein expression and function, leading to a severe form of the syndrome. This variant impairs E3 ubiquitin ligase activity and disrupts X-chromosome inactivation.
Tonne-Kalscheuer syndrome (TOKAS) is an X-linked intellectual disability syndrome associated with variable clinical features including craniofacial abnormalities, hypogenitalism and diaphragmatic hernia. TOKAS is caused exclusively by variants in the gene encoding the E3 ubiquitin ligase gene RLIM, also known as RNF12. Here we report identification of a novel RLIM missense variant, c.1262A>G p.(Tyr421Cys) adjacent to the regulatory basic region, which causes a severe form of TOKAS resulting in perinatal lethality by diaphragmatic hernia. Inheritance and X-chromosome inactivation patterns implicate RLIM p.(Tyr421Cys) as the likely pathogenic variant in the affected individual and within the kindred. We show that the RLIM p.(Tyr421Cys) variant disrupts both expression and function of the protein in an embryonic stem cell model. RLIM p.(Tyr421Cys) is correctly localised to the nucleus, but is readily degraded by the proteasome. The RLIM p.(Tyr421Cys) variant also displays significantly impaired E3 ubiquitin ligase activity, which interferes with RLIM function in Xist long-non-coding RNA induction that initiates imprinted X-chromosome inactivation. Our data uncover a highly disruptive missense variant in RLIM that causes a severe form of TOKAS, thereby expanding our understanding of the molecular and phenotypic spectrum of disease severity.

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