Cargando…

CLPP Depletion Causes Diplotene Arrest; Underlying Testis Mitochondrial Dysfunction Occurs with Accumulation of Perrault Proteins ERAL1, PEO1, and HARS2

Human Perrault syndrome (PRLTS) is autosomal, recessively inherited, and characterized by ovarian insufficiency with hearing loss. Among the genetic causes are mutations of matrix peptidase CLPP, which trigger additional azoospermia. Here, we analyzed the impact of CLPP deficiency on male mouse meio...

Descripción completa

Detalles Bibliográficos
Autores principales: Key, Jana, Gispert, Suzana, Koornneef, Lieke, Sleddens-Linkels, Esther, Kohli, Aneesha, Torres-Odio, Sylvia, Koepf, Gabriele, Amr, Shady, Reichlmeir, Marina, Harter, Patrick N., West, Andrew Phillip, Münch, Christian, Baarends, Willy M., Auburger, Georg
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9818230/
https://www.ncbi.nlm.nih.gov/pubmed/36611846
http://dx.doi.org/10.3390/cells12010052
_version_ 1784864934222364672
author Key, Jana
Gispert, Suzana
Koornneef, Lieke
Sleddens-Linkels, Esther
Kohli, Aneesha
Torres-Odio, Sylvia
Koepf, Gabriele
Amr, Shady
Reichlmeir, Marina
Harter, Patrick N.
West, Andrew Phillip
Münch, Christian
Baarends, Willy M.
Auburger, Georg
author_facet Key, Jana
Gispert, Suzana
Koornneef, Lieke
Sleddens-Linkels, Esther
Kohli, Aneesha
Torres-Odio, Sylvia
Koepf, Gabriele
Amr, Shady
Reichlmeir, Marina
Harter, Patrick N.
West, Andrew Phillip
Münch, Christian
Baarends, Willy M.
Auburger, Georg
author_sort Key, Jana
collection PubMed
description Human Perrault syndrome (PRLTS) is autosomal, recessively inherited, and characterized by ovarian insufficiency with hearing loss. Among the genetic causes are mutations of matrix peptidase CLPP, which trigger additional azoospermia. Here, we analyzed the impact of CLPP deficiency on male mouse meiosis stages. Histology, immunocytology, different OMICS and biochemical approaches, and RT-qPCR were employed in CLPP-null mouse testis. Meiotic chromosome pairing and synapsis proceeded normally. However, the foci number of the crossover marker MLH1 was slightly reduced, and foci persisted in diplotene, most likely due to premature desynapsis, associated with an accumulation of the DNA damage marker γH2AX. No meiotic M-phase cells were detected. Proteome profiles identified strong deficits of proteins involved in male meiotic prophase (HSPA2, SHCBP1L, DMRT7, and HSF5), versus an accumulation of AURKAIP1. Histone H3 cleavage, mtDNA extrusion, and cGAMP increase suggested innate immunity activation. However, the deletion of downstream STING/IFNAR failed to alleviate pathology. As markers of underlying mitochondrial pathology, we observed an accumulation of PRLTS proteins ERAL1, PEO1, and HARS2. We propose that the loss of CLPP leads to the extrusion of mitochondrial nucleotide-binding proteins to cytosol and nucleus, affecting late meiotic prophase progression, and causing cell death prior to M-phase entry. This phenotype is more severe than in mito-mice or mutator-mice.
format Online
Article
Text
id pubmed-9818230
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-98182302023-01-07 CLPP Depletion Causes Diplotene Arrest; Underlying Testis Mitochondrial Dysfunction Occurs with Accumulation of Perrault Proteins ERAL1, PEO1, and HARS2 Key, Jana Gispert, Suzana Koornneef, Lieke Sleddens-Linkels, Esther Kohli, Aneesha Torres-Odio, Sylvia Koepf, Gabriele Amr, Shady Reichlmeir, Marina Harter, Patrick N. West, Andrew Phillip Münch, Christian Baarends, Willy M. Auburger, Georg Cells Article Human Perrault syndrome (PRLTS) is autosomal, recessively inherited, and characterized by ovarian insufficiency with hearing loss. Among the genetic causes are mutations of matrix peptidase CLPP, which trigger additional azoospermia. Here, we analyzed the impact of CLPP deficiency on male mouse meiosis stages. Histology, immunocytology, different OMICS and biochemical approaches, and RT-qPCR were employed in CLPP-null mouse testis. Meiotic chromosome pairing and synapsis proceeded normally. However, the foci number of the crossover marker MLH1 was slightly reduced, and foci persisted in diplotene, most likely due to premature desynapsis, associated with an accumulation of the DNA damage marker γH2AX. No meiotic M-phase cells were detected. Proteome profiles identified strong deficits of proteins involved in male meiotic prophase (HSPA2, SHCBP1L, DMRT7, and HSF5), versus an accumulation of AURKAIP1. Histone H3 cleavage, mtDNA extrusion, and cGAMP increase suggested innate immunity activation. However, the deletion of downstream STING/IFNAR failed to alleviate pathology. As markers of underlying mitochondrial pathology, we observed an accumulation of PRLTS proteins ERAL1, PEO1, and HARS2. We propose that the loss of CLPP leads to the extrusion of mitochondrial nucleotide-binding proteins to cytosol and nucleus, affecting late meiotic prophase progression, and causing cell death prior to M-phase entry. This phenotype is more severe than in mito-mice or mutator-mice. MDPI 2022-12-22 /pmc/articles/PMC9818230/ /pubmed/36611846 http://dx.doi.org/10.3390/cells12010052 Text en © 2022 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
Gispert, Suzana
Koornneef, Lieke
Sleddens-Linkels, Esther
Kohli, Aneesha
Torres-Odio, Sylvia
Koepf, Gabriele
Amr, Shady
Reichlmeir, Marina
Harter, Patrick N.
West, Andrew Phillip
Münch, Christian
Baarends, Willy M.
Auburger, Georg
CLPP Depletion Causes Diplotene Arrest; Underlying Testis Mitochondrial Dysfunction Occurs with Accumulation of Perrault Proteins ERAL1, PEO1, and HARS2
title CLPP Depletion Causes Diplotene Arrest; Underlying Testis Mitochondrial Dysfunction Occurs with Accumulation of Perrault Proteins ERAL1, PEO1, and HARS2
title_full CLPP Depletion Causes Diplotene Arrest; Underlying Testis Mitochondrial Dysfunction Occurs with Accumulation of Perrault Proteins ERAL1, PEO1, and HARS2
title_fullStr CLPP Depletion Causes Diplotene Arrest; Underlying Testis Mitochondrial Dysfunction Occurs with Accumulation of Perrault Proteins ERAL1, PEO1, and HARS2
title_full_unstemmed CLPP Depletion Causes Diplotene Arrest; Underlying Testis Mitochondrial Dysfunction Occurs with Accumulation of Perrault Proteins ERAL1, PEO1, and HARS2
title_short CLPP Depletion Causes Diplotene Arrest; Underlying Testis Mitochondrial Dysfunction Occurs with Accumulation of Perrault Proteins ERAL1, PEO1, and HARS2
title_sort clpp depletion causes diplotene arrest; underlying testis mitochondrial dysfunction occurs with accumulation of perrault proteins eral1, peo1, and hars2
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9818230/
https://www.ncbi.nlm.nih.gov/pubmed/36611846
http://dx.doi.org/10.3390/cells12010052
work_keys_str_mv AT keyjana clppdepletioncausesdiplotenearrestunderlyingtestismitochondrialdysfunctionoccurswithaccumulationofperraultproteinseral1peo1andhars2
AT gispertsuzana clppdepletioncausesdiplotenearrestunderlyingtestismitochondrialdysfunctionoccurswithaccumulationofperraultproteinseral1peo1andhars2
AT koornneeflieke clppdepletioncausesdiplotenearrestunderlyingtestismitochondrialdysfunctionoccurswithaccumulationofperraultproteinseral1peo1andhars2
AT sleddenslinkelsesther clppdepletioncausesdiplotenearrestunderlyingtestismitochondrialdysfunctionoccurswithaccumulationofperraultproteinseral1peo1andhars2
AT kohlianeesha clppdepletioncausesdiplotenearrestunderlyingtestismitochondrialdysfunctionoccurswithaccumulationofperraultproteinseral1peo1andhars2
AT torresodiosylvia clppdepletioncausesdiplotenearrestunderlyingtestismitochondrialdysfunctionoccurswithaccumulationofperraultproteinseral1peo1andhars2
AT koepfgabriele clppdepletioncausesdiplotenearrestunderlyingtestismitochondrialdysfunctionoccurswithaccumulationofperraultproteinseral1peo1andhars2
AT amrshady clppdepletioncausesdiplotenearrestunderlyingtestismitochondrialdysfunctionoccurswithaccumulationofperraultproteinseral1peo1andhars2
AT reichlmeirmarina clppdepletioncausesdiplotenearrestunderlyingtestismitochondrialdysfunctionoccurswithaccumulationofperraultproteinseral1peo1andhars2
AT harterpatrickn clppdepletioncausesdiplotenearrestunderlyingtestismitochondrialdysfunctionoccurswithaccumulationofperraultproteinseral1peo1andhars2
AT westandrewphillip clppdepletioncausesdiplotenearrestunderlyingtestismitochondrialdysfunctionoccurswithaccumulationofperraultproteinseral1peo1andhars2
AT munchchristian clppdepletioncausesdiplotenearrestunderlyingtestismitochondrialdysfunctionoccurswithaccumulationofperraultproteinseral1peo1andhars2
AT baarendswillym clppdepletioncausesdiplotenearrestunderlyingtestismitochondrialdysfunctionoccurswithaccumulationofperraultproteinseral1peo1andhars2
AT auburgergeorg clppdepletioncausesdiplotenearrestunderlyingtestismitochondrialdysfunctionoccurswithaccumulationofperraultproteinseral1peo1andhars2