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Inactivity of Peptidase ClpP Causes Primary Accumulation of Mitochondrial Disaggregase ClpX with Its Interacting Nucleoid Proteins, and of mtDNA

Biallelic pathogenic variants in CLPP, encoding mitochondrial matrix peptidase ClpP, cause a rare autosomal recessive condition, Perrault syndrome type 3 (PRLTS3). It is characterized by primary ovarian insufficiency and early sensorineural hearing loss, often associated with progressive neurologica...

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Autores principales: Key, Jana, Torres-Odio, Sylvia, Bach, Nina C., Gispert, Suzana, Koepf, Gabriele, Reichlmeir, Marina, West, A. Phillip, Prokisch, Holger, Freisinger, Peter, Newman, William G., Shalev, Stavit, Sieber, Stephan A., Wittig, Ilka, Auburger, Georg
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8699119/
https://www.ncbi.nlm.nih.gov/pubmed/34943861
http://dx.doi.org/10.3390/cells10123354
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author Key, Jana
Torres-Odio, Sylvia
Bach, Nina C.
Gispert, Suzana
Koepf, Gabriele
Reichlmeir, Marina
West, A. Phillip
Prokisch, Holger
Freisinger, Peter
Newman, William G.
Shalev, Stavit
Sieber, Stephan A.
Wittig, Ilka
Auburger, Georg
author_facet Key, Jana
Torres-Odio, Sylvia
Bach, Nina C.
Gispert, Suzana
Koepf, Gabriele
Reichlmeir, Marina
West, A. Phillip
Prokisch, Holger
Freisinger, Peter
Newman, William G.
Shalev, Stavit
Sieber, Stephan A.
Wittig, Ilka
Auburger, Georg
author_sort Key, Jana
collection PubMed
description Biallelic pathogenic variants in CLPP, encoding mitochondrial matrix peptidase ClpP, cause a rare autosomal recessive condition, Perrault syndrome type 3 (PRLTS3). It is characterized by primary ovarian insufficiency and early sensorineural hearing loss, often associated with progressive neurological deficits. Mouse models showed that accumulations of (i) its main protein interactor, the substrate-selecting AAA+ ATPase ClpX, (ii) mitoribosomes, and (iii) mtDNA nucleoids are the main cellular consequences of ClpP absence. However, the sequence of these events and their validity in human remain unclear. Here, we studied global proteome profiles to define ClpP substrates among mitochondrial ClpX interactors, which accumulated consistently in ClpP-null mouse embryonal fibroblasts and brains. Validation work included novel ClpP-mutant patient fibroblast proteomics. ClpX co-accumulated in mitochondria with the nucleoid component POLDIP2, the mitochondrial poly(A) mRNA granule element LRPPRC, and tRNA processing factor GFM1 (in mouse, also GRSF1). Only in mouse did accumulated ClpX, GFM1, and GRSF1 appear in nuclear fractions. Mitoribosomal accumulation was minor. Consistent accumulations in murine and human fibroblasts also affected multimerizing factors not known as ClpX interactors, namely, OAT, ASS1, ACADVL, STOM, PRDX3, PC, MUT, ALDH2, PMPCB, UQCRC2, and ACADSB, but the impact on downstream metabolites was marginal. Our data demonstrate the primary impact of ClpXP on the assembly of proteins with nucleic acids and show nucleoid enlargement in human as a key consequence.
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spelling pubmed-86991192021-12-24 Inactivity of Peptidase ClpP Causes Primary Accumulation of Mitochondrial Disaggregase ClpX with Its Interacting Nucleoid Proteins, and of mtDNA Key, Jana Torres-Odio, Sylvia Bach, Nina C. Gispert, Suzana Koepf, Gabriele Reichlmeir, Marina West, A. Phillip Prokisch, Holger Freisinger, Peter Newman, William G. Shalev, Stavit Sieber, Stephan A. Wittig, Ilka Auburger, Georg Cells Article Biallelic pathogenic variants in CLPP, encoding mitochondrial matrix peptidase ClpP, cause a rare autosomal recessive condition, Perrault syndrome type 3 (PRLTS3). It is characterized by primary ovarian insufficiency and early sensorineural hearing loss, often associated with progressive neurological deficits. Mouse models showed that accumulations of (i) its main protein interactor, the substrate-selecting AAA+ ATPase ClpX, (ii) mitoribosomes, and (iii) mtDNA nucleoids are the main cellular consequences of ClpP absence. However, the sequence of these events and their validity in human remain unclear. Here, we studied global proteome profiles to define ClpP substrates among mitochondrial ClpX interactors, which accumulated consistently in ClpP-null mouse embryonal fibroblasts and brains. Validation work included novel ClpP-mutant patient fibroblast proteomics. ClpX co-accumulated in mitochondria with the nucleoid component POLDIP2, the mitochondrial poly(A) mRNA granule element LRPPRC, and tRNA processing factor GFM1 (in mouse, also GRSF1). Only in mouse did accumulated ClpX, GFM1, and GRSF1 appear in nuclear fractions. Mitoribosomal accumulation was minor. Consistent accumulations in murine and human fibroblasts also affected multimerizing factors not known as ClpX interactors, namely, OAT, ASS1, ACADVL, STOM, PRDX3, PC, MUT, ALDH2, PMPCB, UQCRC2, and ACADSB, but the impact on downstream metabolites was marginal. Our data demonstrate the primary impact of ClpXP on the assembly of proteins with nucleic acids and show nucleoid enlargement in human as a key consequence. MDPI 2021-11-29 /pmc/articles/PMC8699119/ /pubmed/34943861 http://dx.doi.org/10.3390/cells10123354 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Key, Jana
Torres-Odio, Sylvia
Bach, Nina C.
Gispert, Suzana
Koepf, Gabriele
Reichlmeir, Marina
West, A. Phillip
Prokisch, Holger
Freisinger, Peter
Newman, William G.
Shalev, Stavit
Sieber, Stephan A.
Wittig, Ilka
Auburger, Georg
Inactivity of Peptidase ClpP Causes Primary Accumulation of Mitochondrial Disaggregase ClpX with Its Interacting Nucleoid Proteins, and of mtDNA
title Inactivity of Peptidase ClpP Causes Primary Accumulation of Mitochondrial Disaggregase ClpX with Its Interacting Nucleoid Proteins, and of mtDNA
title_full Inactivity of Peptidase ClpP Causes Primary Accumulation of Mitochondrial Disaggregase ClpX with Its Interacting Nucleoid Proteins, and of mtDNA
title_fullStr Inactivity of Peptidase ClpP Causes Primary Accumulation of Mitochondrial Disaggregase ClpX with Its Interacting Nucleoid Proteins, and of mtDNA
title_full_unstemmed Inactivity of Peptidase ClpP Causes Primary Accumulation of Mitochondrial Disaggregase ClpX with Its Interacting Nucleoid Proteins, and of mtDNA
title_short Inactivity of Peptidase ClpP Causes Primary Accumulation of Mitochondrial Disaggregase ClpX with Its Interacting Nucleoid Proteins, and of mtDNA
title_sort inactivity of peptidase clpp causes primary accumulation of mitochondrial disaggregase clpx with its interacting nucleoid proteins, and of mtdna
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8699119/
https://www.ncbi.nlm.nih.gov/pubmed/34943861
http://dx.doi.org/10.3390/cells10123354
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