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Biallelic variants in DAP3 result in reduced assembly of the mitoribosomal small subunit with altered intrinsic and extrinsic apoptosis and a Perrault syndrome-spectrum phenotype.

Authors :
Smith TB
Kopajtich R
Demain LAM
Rea A
Thomas HB
Schiff M
Beetz C
Joss S
Conway GS
Shukla A
Yeole M
Radhakrishnan P
Azzouz H
Ben Chehida A
Elmaleh-Bergès M
Glasgow RIC
Thompson K
Oláhová M
He L
Jenkinson EM
Jahic A
Belyantseva IA
Barzik M
Urquhart JE
O' Sullivan J
Williams SG
Bhaskar SS
Carrera S
Blakes AJM
Banka S
Yue WW
Ellingford JM
Houlden H
Munro KJ
Friedman TB
Taylor RW
Prokisch H
O'Keefe RT
Newman WG
Source :
MedRxiv : the preprint server for health sciences [medRxiv] 2024 Aug 21. Date of Electronic Publication: 2024 Aug 21.
Publication Year :
2024

Abstract

The mitoribosome synthesizes 13 protein subunits of the oxidative phosphorylation system encoded by the mitochondrial genome. The mitoribosome is composed of 12S rRNA, 16S rRNA and 82 mitoribosomal proteins encoded by nuclear genes. To date, variants in 12 genes encoding mitoribosomal proteins are associated with rare monogenic disorders, and frequently show combined oxidative phosphorylation deficiency. Here, we describe five unrelated individuals with biallelic variants in the DAP3 nuclear gene encoding mitoribosomal small subunit 29 (MRPS29), with variable clinical presentations ranging from Perrault syndrome (sensorineural hearing loss and ovarian insufficiency) to an early childhood neurometabolic phenotype. Assessment of respiratory chain function and proteomic profiling of fibroblasts from affected individuals demonstrated reduced MRPS29 protein levels, and consequently decreased levels of additional protein components of the mitoribosomal small subunit, associated with a combined complex I and IV deficiency. Lentiviral transduction of fibroblasts from affected individuals with wild-type DAP3 cDNA increased DAP3 mRNA expression, and partially rescued protein levels of MRPS7, MRPS9 and complex I and IV subunits, demonstrating the pathogenicity of the DAP3 variants. Protein modelling suggested that DAP3 disease-associated missense variants can impact ADP binding, and in vitro assays demonstrated DAP3 variants can consequently reduce both intrinsic and extrinsic apoptotic sensitivity, DAP3 thermal stability and DAP3 GTPase activity. Our study presents genetic and functional evidence that biallelic variants in DAP3 result in a multisystem disorder of combined oxidative phosphorylation deficiency with pleiotropic presentations, consistent with mitochondrial dysfunction.<br />Competing Interests: Declaration of interest The authors declare no competing interests.

Details

Language :
English
Database :
MEDLINE
Journal :
MedRxiv : the preprint server for health sciences
Publication Type :
Academic Journal
Accession number :
39371131
Full Text :
https://doi.org/10.1101/2024.08.19.24312079