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Unveiling the crucial neuronal role of the proteasomal ATPase subunit gene PSMC5 in neurodevelopmental proteasomopathies.

Authors :
Küry S
Stanton JE
van Woerden G
Hsieh TC
Rosenfelt C
Scott-Boyer MP
Most V
Wang T
Papendorf JJ
de Konink C
Deb W
Vignard V
Studencka-Turski M
Besnard T
Hajdukowicz AM
Thiel F
Möller S
Florenceau L
Cuinat S
Marsac S
Wentzensen I
Tuttle A
Forster C
Striesow J
Golnik R
Ortiz D
Jenkins L
Rosenfeld JA
Ziegler A
Houdayer C
Bonneau D
Torti E
Begtrup A
Monaghan KG
Mullegama SV
Volker-Touw CMLN
van Gassen KLI
Oegema R
de Pagter M
Steindl K
Rauch A
Ivanovski I
McDonald K
Boothe E
Dauber A
Baker J
Fabie NAV
Bernier RA
Turner TN
Srivastava S
Dies KA
Swanson L
Costin C
Jobling RK
Pappas J
Rabin R
Niyazov D
Tsai AC
Kovak K
Beck DB
Malicdan M
Adams DR
Wolfe L
Ganetzky RD
Muraresku C
Babikyan D
Sedláček Z
Hančárová M
Timberlake AT
Al Saif H
Nestler B
King K
Hajianpour MJ
Costain G
Prendergast D
Li C
Geneviève D
Vitobello A
Sorlin A
Philippe C
Harel T
Toker O
Sabir A
Lim D
Hamilton M
Bryson L
Cleary E
Weber S
Hoffman TL
Cueto-González AM
Tizzano EF
Gómez-Andrés D
Codina-Solà M
Ververi A
Pavlidou E
Lambropoulos A
Garganis K
Rio M
Levy J
Jurgensmeyer S
McRae AM
Lessard MK
D'Agostino MD
De Bie I
Wegler M
Jamra RA
Kamphausen SB
Bothe V
Busch LM
Völker U
Hammer E
Wende K
Cogné B
Isidor B
Meiler J
Bosc-Rosati A
Marcoux J
Bousquet MP
Poschmann J
Laumonnier F
Hildebrand PW
Eichler EE
McWalter K
Krawitz PM
Droit A
Elgersma Y
Grabrucker AM
Bolduc FV
Bézieau S
Ebstein F
Krüger E
Source :
MedRxiv : the preprint server for health sciences [medRxiv] 2024 Jan 26. Date of Electronic Publication: 2024 Jan 26.
Publication Year :
2024

Abstract

Neurodevelopmental proteasomopathies represent a distinctive category of neurodevelopmental disorders (NDD) characterized by genetic variations within the 26S proteasome, a protein complex governing eukaryotic cellular protein homeostasis. In our comprehensive study, we identified 23 unique variants in PSMC5 , which encodes the AAA-ATPase proteasome subunit PSMC5/Rpt6, causing syndromic NDD in 38 unrelated individuals. Overexpression of PSMC5 variants altered human hippocampal neuron morphology, while PSMC5 knockdown led to impaired reversal learning in flies and loss of excitatory synapses in rat hippocampal neurons. PSMC5 loss-of-function resulted in abnormal protein aggregation, profoundly impacting innate immune signaling, mitophagy rates, and lipid metabolism in affected individuals. Importantly, targeting key components of the integrated stress response, such as PKR and GCN2 kinases, ameliorated immune dysregulations in cells from affected individuals. These findings significantly advance our understanding of the molecular mechanisms underlying neurodevelopmental proteasomopathies, provide links to research in neurodegenerative diseases, and open up potential therapeutic avenues.

Details

Language :
English
Database :
MEDLINE
Journal :
MedRxiv : the preprint server for health sciences
Publication Type :
Academic Journal
Accession number :
38293138
Full Text :
https://doi.org/10.1101/2024.01.13.24301174