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PSMC3 proteasome subunit variants are associated with neurodevelopmental delay and type I interferon production

  • Frédéric Ebstein
  • , Sébastien Küry
  • , Victoria Most
  • , Cory Rosenfelt
  • , Marie Pier Scott-Boyer
  • , Geeske M. van Woerden
  • , Thomas Besnard
  • , Jonas Johannes Papendorf
  • , Maja Studencka-Turski
  • , Tianyun Wang
  • , Tzung Chien Hsieh
  • , Richard Golnik
  • , Dustin Baldridge
  • , Cara Forster
  • , Charlotte de Konink
  • , Selina M.W. Teurlings
  • , Virginie Vignard
  • , Richard H. van Jaarsveld
  • , Lesley Ades
  • , Benjamin Cogné
  • Cyril Mignot, Wallid Deb, Marjolijn C.J. Jongmans, F. Sessions Cole, Marie José H. van den Boogaard, Jennifer A. Wambach, Daniel J. Wegner, Sandra Yang, Vickie Hannig, Jennifer Ann Brault, Neda Zadeh, Bruce Bennetts, Boris Keren, Anne Claire Gélineau, Zöe Powis, Meghan Towne, Kristine Bachman, Andrea Seeley, Anita E. Beck, Jennifer Morrison, Rachel Westman, Kelly Averill, Theresa Brunet, Judith Haasters, Melissa T. Carter, Matthew Osmond, Patricia G. Wheeler, Francesca Forzano, Shehla Mohammed, Yannis Trakadis, Andrea Accogli, Rachel Harrison, Yiran Guo, Hakon Hakonarson, Sophie Rondeau, Geneviève Baujat, Giulia Barcia, René Günther Feichtinger, Johannes Adalbert Mayr, Martin Preisel, Frédéric Laumonnier, Tilmann Kallinich, Alexej Knaus, Bertrand Isidor, Peter Krawitz, Uwe Völker, Elke Hammer, Arnaud Droit, Evan E. Eichler, Ype Elgersma, Peter W. Hildebrand, François Bolduc, Elke Krüger*, Stéphane Bézieau*
*Corresponding author for this work
  • University of Greifswald
  • CHU de Nantes
  • L'Institut du Thorax Curie-Montsouris
  • University Hospital Leipzig
  • University of Alberta
  • Université Laval
  • University of Washington School of Medicine
  • Peking University Health Science Center
  • Peking University
  • University Hospital Bonn
  • Universitätsklinik und Poliklinik für Pädiatrie I (Halle)
  • Washington University School of Medicine in St. Louis
  • GeneDX Inc
  • Utrecht University
  • The Children's Hospital at Westmead
  • The University of Sydney
  • Hôpital La Pitié-Salpêtrière
  • Sorbonne Université
  • Princess Máxima Center for Pediatric Oncology
  • Vanderbilt University School of Medicine
  • University of California at Irvine
  • Assistance publique – Hôpitaux de Paris
  • Ambry Genetics
  • PA 17822
  • University of Washington
  • Orlando Regional Medical Center
  • St. Luke's Clinic (Boise)
  • University of Texas Health Science Center at San Antonio
  • Technical University of Munich
  • German Research Center for Environmental Health
  • Klinikum der Universität München
  • Children's Hospital of Eastern Ontario (Ottawa)
  • Wellcome Sanger Institute
  • Guy's and St Thomas' NHS Foundation Trust
  • McGill University Health Centre
  • Nottingham University Hospitals NHS Trust
  • Children's Hospital of Philadelphia
  • Institut Imagine
  • University Children’s Hospital, Salzburg
  • Université de Tours
  • University Hospital of Tours
  • Charité – Universitätsmedizin Berlin
  • Leibniz Association

Research output: Contribution to journalArticleAcademicpeer-review

27 Citations (Scopus)

Abstract

A critical step in preserving protein homeostasis is the recognition, binding, unfolding, and translocation of protein substrates by six AAA-ATPase proteasome subunits (ATPase-associated with various cellular activities) termed PSMC1-6, which are required for degradation of proteins by 26S proteasomes. Here, we identified 15 de novo missense variants in the PSMC3 gene encoding the AAA-ATPase proteasome subunit PSMC3/Rpt5 in 23 unrelated heterozygous patients with an autosomal dominant form of neurodevelopmental delay and intellectual disability. Expression of PSMC3 variants in mouse neuronal cultures led to altered dendrite development, and deletion of the PSMC3 fly ortholog Rpt5 impaired reversal learning capabilities in fruit flies. Structural modeling as well as proteomic and transcriptomic analyses of T cells derived from patients with PSMC3 variants implicated the PSMC3 variants in proteasome dysfunction through disruption of substrate translocation, induction of proteotoxic stress, and alterations in proteins controlling developmental and innate immune programs. The proteostatic perturbations in T cells from patients with PSMC3 variants correlated with a dysregulation in type I interferon (IFN) signaling in these T cells, which could be blocked by inhibition of the intracellular stress sensor protein kinase R (PKR). These results suggest that proteotoxic stress activated PKR in patient-derived T cells, resulting in a type I IFN response. The potential relationship among proteosome dysfunction, type I IFN production, and neurodevelopment suggests new directions in our understanding of pathogenesis in some neurodevelopmental disorders.

Original languageEnglish
Article numbereabo3189
JournalScience Translational Medicine
Volume15
Issue number698
DOIs
Publication statusPublished - 31 May 2023

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