Accès ouvert déclaré
2025
article
Investigating the neuronal role of the proteasomal ATPase subunit gene PSMC5 in neurodevelopmental proteasomopathies
Sébastien Küry, Janelle E. Stanton, Geeske M. van Woerden, Amélie Bosc-Rosati, Tzung‐Chien Hsieh, Lise Bray, Marielle Oloudé, Cory Rosenfelt, Marie‐Pier Scott‐Boyer, Victoria Most, Tianyun Wang, Jonas Johannes Papendorf, Charlotte de Konink, Wallid Deb, Virginie Vignard, Maja Studencka‐Turski, Thomas Besnard, Anna Marta Hajdukowicz, Franziska G. Thiel, Laëtitia Florenceau, Silvestre Cuinat, Sylvain Marsac, Yann Verrès, Audrey Dangoumau, Léa Poirier, Ingrid M. Wentzensen, Annabelle Tuttle, Cara Forster, Johanna Striesow, Richard Golnik, Damara Ortiz, Laura Jenkins, Jill A. Rosenfeld, Alban Ziegler, Clara Houdayer, Dominique Bonneau, Erin Torti, Amber Begtrup, Kristin G. Monaghan, Sureni V. Mullegama, Catharina M.L. Volker‐Touw, Koen L.I. van Gassen, Renske Oegema, Mirjam S. de Pagter, Katharina Steindl, Anita Rauch, Ivan Ivanovski, Kimberly S. McDonald, Emily Boothe, Andrew Dauber, Janice Baker, Noelle Andrea V. Fabie, Raphael Bernier, Tychele N. Turner, Siddharth Srivastava, Kira A. Dies, Lindsay C. Swanson, Carrie Costin, Alali Abdulrazak, Rebekah Jobling, John Pappas, Rachel Rabin, Dmitriy Niyazov, Anne Chun‐Hui Tsai, Karen Kovak, David B. Beck, May Christine V. Malicdan, David R. Adams, Lynne A. Wolfe, Rebecca Ganetzky, Colleen Muraresku, Davit Babikyan, Zdeněk Sedláček, Miroslava Hančárová, Andrew T. Timberlake, Hind Al Saif, Berkley Nestler, Kayla King, M.J. Hajianpour, Gregory Costain, D’Arcy Prendergast, Chumei Li, David Geneviève, Antonio Vitobello, Arthur Sorlin, Christophe Philippe, Tamar Harel, Ori Toker, Ataf Sabir, Derek Lim, Mark Hamilton, Lisa Bryson, Elaine Cleary, Sacha Weber, Trevor L. Hoffman, Anna M. Cueto‐González, Eduardo F. Tizzano, David Gómez‐Andrés, Marta Codina‐Solà, Athina Ververi, Efterpi Pavlidou, Αlexandros Lampropoulos, Kyriakos Garganis, Marlène Rio, Jonathan Lévy, Anne McRae, Mathieu Lessard, Daniela D’Agostino, Isabelle De Bie, Meret Wegler, Rami Abou Jamra, Susanne B. Kamphausen, Viktoria Bothe, Lorraine Potocki, Eric Olinger, Yves Sznajer, Elsa Wiame, Michelle L. Thompson, Molly C. Schroeder, Catherine Gooch, Rachel B. Smith, Arti Pandya, Larissa M. Busch, Uwe Völker, Elke Hammer, Kristian Wende, Benjamin Cogné, Bertrand Isidor, Jens Meiler, Clémentine Ripoll, Stéphanie Bigou, Frédéric Laumonnier, Peter W. Hildebrand, Evan E. Eichler, Kirsty McWalter, Peter Krawitz, Florence Roux‐Dalvai, Ype Elgersma, Julien Marcoux, Marie‐Pierre Bousquet, Arnaud Droit, Jérémie Poschmann, Andreas M. Grabrucker, François V. Bolduc, Stéphane Bezieau, Frédéric Ebstein, Elke Krüger
3Citations signalées, ce qui n’est pas une note de qualité
112Institutions déclarées
17Pays d’affiliation déclarés
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Le résumé fourni par la source
Neurodevelopmental proteasomopathies are a group of disorders caused by variants in proteasome subunit genes, that disrupt protein homeostasis and brain development through poorly characterized mechanisms. Here, we report 26 distinct variants in PSMC5, encoding the AAA⁺ ATPase subunit PSMC5/RPT6, in individuals with syndromic neurodevelopmental conditions. Combining genetic, multi-omics and biochemical approaches across cellular models and Drosophila, we unveil the essential role of proteasomes in sustaining key cellular processes. Loss of PSMC5/RPT6 function impairs proteasome activity, leading to protein aggregation, disruption of mitochondrial homeostasis, and dysregulation of lipid metabolism and immune signaling. It also compromises synaptic balance, neuritogenesis, and neural progenitor cell stemness, causing deficits in higher-order functions, including learning and locomotion. Pharmacological targeting of integrated stress response kinases reveals a mechanistic link between proteotoxic stress and spontaneous type I interferon activation. These findings expand our understanding of proteasome-dependent quality control in neurodevelopment and suggest potential therapeutic strategies for neurodevelopmental proteasomopathies.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Investigating the neuronal role of the proteasomal ATPase subunit gene PSMC5 in neurodevelopmental proteasomopathies
- Date Crossref
- 26/11/2025
- Éditeur
- Springer Science and Business Media LLC
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Ubiquitin and proteasome pathwaysGenetics and Neurodevelopmental DisordersMicrotubule and mitosis dynamics