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CiliaCarta: An integrated and validated compendium of ciliary genes

  • T.J.P. van Dam
  • , Julie E. Kennedy
  • , Robin van der Lee
  • , Erik De Vrieze
  • , Kirsten A. Wunderlich
  • , Suzanne Rix
  • , Gerard Dougherty
  • , Nils J. Lambacher
  • , Chunmei Li
  • , Victor L Jensen
  • , Michel R. Leroux
  • , Rim Hjeij
  • , Nicola Horn
  • , Yves Texier
  • , Yasmin Wissinger
  • , Jeroen Van Reeuwijk
  • , Gabrielle Wheway
  • , Barbara Knapp
  • , Jan F. Scheel
  • , Brunella Franco
  • Dorus A. Mans, Erwin Van Wijk, François Kepes, Gisela G. Slaats, Grischa Toedt, Hannie Kremer, Heymut Omran, Katarzyna Szymanska, Konstantinos Koutroumpas, Marius Ueffing, Thanh Minh T. Nguyen, Stef J.F. Letteboer, Machteld M. Oud, Sylvia E.C. Van Beersum, Miriam Schmidts, Philip L Beales, Qianhao Lu, Rachel H. Giles, Radek Szklarczyk, Robert B. Russell, Toby J. Gibson, Colin A. Johnson, Oliver E. Blacque, Uwe Wolfrum, Karsten Boldt, Ronald Roepman, Victor Hernandez-Hernandez, Martijn H. Huynen
  • Radboud University Medical Center
  • UCL Institute of Child Health
  • Simon Fraser University
  • University of Münster
  • University of Tübingen
  • Johannes Gutenberg University Mainz
  • Maastricht University
  • University College London
  • University College Dublin
  • Radboud University Nijmegen
  • University of Leeds
  • St James's University Hospital
  • Fondazione Telethon
  • University of Naples Federico II
  • Université d'Évry Val-d'Essonne
  • Utrecht University
  • European Molecular Biology Laboratory
  • Helmholtz Zentrum München - German Research Center for Environmental Health
  • Heidelberg University 
  • Biocomputing

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

The cilium is an essential organelle at the surface of most mammalian cells whose dysfunction causes a wide range of genetic diseases collectively called ciliopathies. The current rate at which new ciliopathy genes are identified suggests that many ciliary components remain undiscovered. We generated and rigorously analyzed genomic, proteomic, transcriptomic and evolutionary data and systematically integrated these using Bayesian statistics into a predictive score for ciliary function. This resulted in 285 candidate ciliary genes. We found experimental evidence of ciliary associations for 24 out of 36 analyzed candidate proteins. In addition, we show that OSCP1, which has previously been implicated in two distinct non-ciliary functions, causes a cilium dysfunction phenotype when depleted in zebrafish. The candidate list forms the basis of CiliaCarta, a comprehensive ciliary compendium covering 836 genes. The resource can be used to objectively prioritize candidate genes in whole exome or genome sequencing of ciliopathy patients and can be accessed at http://bioinformatics.bio.uu.nl/john/syscilia/ciliacarta/.
Original languageEnglish
Article numbere0216705
Number of pages32
JournalPLoS One
DOIs
Publication statusPublished - 16 May 2019

Keywords

  • Ciliary genes
  • thecilium
  • Bayesian classifier
  • CiliaCarta
  • OSCP1
  • ciliary proteome
  • data integration

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