Bi-allelic variants in MRPL49 cause variable clinical presentations, including sensorineural hearing loss, leukodystrophy, and ovarian insufficiency

  • Huw B. Thomas
  • , Leigh A.M. Demain
  • , Alfredo Cabrera-Orefice
  • , Isabelle Schrauwen
  • , Hanan E. Shamseldin
  • , Alessandro Rea
  • , Thashi Bharadwaj
  • , Thomas B. Smith
  • , Monika Oláhová
  • , Kyle Thompson
  • , Langping He
  • , Namanpreet Kaur
  • , Anju Shukla
  • , Musaad Abukhalid
  • , Muhammad Ansar
  • , Sakina Rehman
  • , Saima Riazuddin
  • , Firdous Abdulwahab
  • , Janine M. Smith
  • , Zornitza Stark
  • Hanifenur Mancilar, Sait Tumer, Fatma N. Esen, Eyyup Uctepe, Vehap Topcu, Ahmet Yesilyurt, Erum Afzal, Mehri Salari, Christopher Carroll, Giovanni Zifarelli, Peter Bauer, Deniz Kor, Fatma D. Bulut, Henry Houlden, Reza Maroofian, Samantha Carrera, Wyatt W. Yue, Kevin J. Munro, Fowzan S. Alkuraya, Peter Jamieson, Zubair M. Ahmed, Suzanne M. Leal, Robert W. Taylor, Ilka Wittig, Raymond T. O'Keefe*, William G. Newman*
*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

3 Citations (Scopus)

Abstract

Combined oxidative phosphorylation deficiency (COXPD) is a rare multisystem disorder that is clinically and genetically heterogeneous. Genome sequencing identified bi-allelic MRPL49 variants in individuals from nine unrelated families with presentations ranging from Perrault syndrome (primary ovarian insufficiency and sensorineural hearing loss) to severe childhood onset of leukodystrophy, learning disability, microcephaly, and retinal dystrophy. Complexome profiling of fibroblasts from affected individuals revealed reduced levels of the small mitochondrial ribosomal subunits and a more pronounced reduction of the large mitochondrial ribosomal subunits. There was no evidence of altered mitoribosomal assembly. The reductions in levels of oxidative phosphorylation (OXPHOS) enzyme complexes I and IV are consistent with a form of COXPD associated with bi-allelic MRPL49 variants, expanding the understanding of how disruption of the mitochondrial ribosomal large subunit results in multisystem phenotypes.

Original languageEnglish
Pages (from-to)952-962
Number of pages11
JournalAmerican Journal of Human Genetics
Volume112
Issue number4
DOIs
Publication statusPublished - 03-04-2025

All Science Journal Classification (ASJC) codes

  • Genetics
  • Genetics(clinical)

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