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Bi-allelic loss-of-function variants in POC5 cause a syndromic retinal, endocrine and neuromuscular ciliopathy

  • Anneke T Vulto-van Silfhout*
  • , Ingrid M Jazet
  • , Suzanne Yzer
  • , Jeroen Pas
  • , Serwet Demirdas
  • , Elisabeth F C van Rossum
  • , Alberta A H J Thiadens
  • , Ronald van Beek
  • , Lonneke Haer-Wigman
  • , Daniela Q C M Barge-Schaapveld
  • , Charlotte Brasch-Andersen
  • , Simon Frost
  • , Miriam Bauwens
  • , Elfride De Baere
  • , Irina Balikova
  • , Filip Van den Broeck
  • , Monika Weisz-Hubshman
  • , Pascal Joset
  • , Peter Miny
  • , Isabel Filges
  • Susanne Kohl, Pietro De Angeli, Laura Kühlewein, Jan-Philipp Bodenbender, Tobias Haack, Karin Poths, Lidia Fernandez-Caballero, Marta Corton, Fiona Blanco Kelly, Carmen Ayuso, Peggy Martínez-Esteban, John Vissing, Jordi Díaz-Manera, Volker Straub, Ana Töpf, Siying Lin, Gavin Arno, William L Macken, Jennifer Spillane, Radha Ramachandran, Erik de Vrieze, Tjakko van Ham, Susanne Roosing, Machteld M Oud
*Corresponding author af dette arbejde
2 Citationer (Scopus)

Abstract

PURPOSE: A homozygous loss-of-function (LoF) variant in POC5 was previously described in an individual with retinitis pigmentosa. We identified POC5 variants in 12 probands with a syndromic phenotype. We aim to define the phenotype spectrum and molecular mechanism associated with biallelic POC5 LoF variants.

METHODS: We studied a cohort of 12 families with bi-allelic LoF POC5 variants and performed detailed phenotype analysis. POC5 localization studies were performed in 3 proband-derived fibroblast cell lines.

RESULTS: Detailed phenotyping of probands with POC5 variants expands the phenotype spectrum beyond ocular manifestations. This syndrome causes not only rod-cone dystrophy but also diabetes mellitus with severe insulin resistance and partial lipodystrophy, kidney disease, and muscle cramps. The POC5 protein plays an essential role during cell cycle and cilium formation. Interestingly, POC5 localization studies in 3 proband-derived fibroblast cell lines show aberrant localization suggesting a ciliary defect. The phenotypes of the 12 families in this study fit well within the ciliopathy phenotype spectrum, except for lipodystrophy, which is not common in ciliopathies.

CONCLUSION: We describe a multiorgan syndrome caused by bi-allelic LoF variants in POC5. This underscores the pleiotropic effects of POC5 variants and highlights the significance of adipose tissue and metabolic dysfunction in ciliopathies.

OriginalsprogEngelsk
Artikelnummer101513
TidsskriftGenetics in medicine : official journal of the American College of Medical Genetics
Vol/bind27
Udgave nummer10
ISSN1098-3600
DOI
StatusUdgivet - okt. 2025

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