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Genetic Complementation of ATP Synthase Deficiency Due to Dysfunction of TMEM70 Assembly Factor in Rat

Mutations of the TMEM70 gene disrupt the biogenesis of the ATP synthase and represent the most frequent cause of autosomal recessive encephalo-cardio-myopathy with neonatal onset. Patient tissues show isolated defects in the ATP synthase, leading to the impaired mitochondrial synthesis of ATP and in...

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Autores principales: Marković, Aleksandra, Tauchmannová, Kateřina, Šimáková, Miroslava, Mlejnek, Petr, Kaplanová, Vilma, Pecina, Petr, Pecinová, Alena, Papoušek, František, Liška, František, Šilhavý, Jan, Mikešová, Jana, Neckář, Jan, Houštěk, Josef, Pravenec, Michal, Mráček, Tomáš
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8869460/
https://www.ncbi.nlm.nih.gov/pubmed/35203486
http://dx.doi.org/10.3390/biomedicines10020276
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author Marković, Aleksandra
Tauchmannová, Kateřina
Šimáková, Miroslava
Mlejnek, Petr
Kaplanová, Vilma
Pecina, Petr
Pecinová, Alena
Papoušek, František
Liška, František
Šilhavý, Jan
Mikešová, Jana
Neckář, Jan
Houštěk, Josef
Pravenec, Michal
Mráček, Tomáš
author_facet Marković, Aleksandra
Tauchmannová, Kateřina
Šimáková, Miroslava
Mlejnek, Petr
Kaplanová, Vilma
Pecina, Petr
Pecinová, Alena
Papoušek, František
Liška, František
Šilhavý, Jan
Mikešová, Jana
Neckář, Jan
Houštěk, Josef
Pravenec, Michal
Mráček, Tomáš
author_sort Marković, Aleksandra
collection PubMed
description Mutations of the TMEM70 gene disrupt the biogenesis of the ATP synthase and represent the most frequent cause of autosomal recessive encephalo-cardio-myopathy with neonatal onset. Patient tissues show isolated defects in the ATP synthase, leading to the impaired mitochondrial synthesis of ATP and insufficient energy provision. In the current study, we tested the efficiency of gene complementation by using a transgenic rescue approach in spontaneously hypertensive rats with the targeted Tmem70 gene (SHR-Tmem70(ko)(/ko)), which leads to embryonic lethality. We generated SHR-Tmem70(ko)(/ko) knockout rats expressing the Tmem70 wild-type transgene (SHR-Tmem70(ko)(/ko,tg/tg)) under the control of the EF-1α universal promoter. Transgenic rescue resulted in viable animals that showed the variable expression of the Tmem70 transgene across the range of tissues and only minor differences in terms of the growth parameters. The TMEM70 protein was restored to 16–49% of the controls in the liver and heart, which was sufficient for the full biochemical complementation of ATP synthase biogenesis as well as for mitochondrial energetic function in the liver. In the heart, we observed partial biochemical complementation, especially in SHR-Tmem70(ko)(/ko,tg/0) hemizygotes. As a result, this led to a minor impairment in left ventricle function. Overall, the transgenic rescue of Tmem70 in SHR-Tmem70(ko)(/ko) knockout rats resulted in the efficient complementation of ATP synthase deficiency and thus in the successful genetic treatment of an otherwise fatal mitochondrial disorder.
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spelling pubmed-88694602022-02-25 Genetic Complementation of ATP Synthase Deficiency Due to Dysfunction of TMEM70 Assembly Factor in Rat Marković, Aleksandra Tauchmannová, Kateřina Šimáková, Miroslava Mlejnek, Petr Kaplanová, Vilma Pecina, Petr Pecinová, Alena Papoušek, František Liška, František Šilhavý, Jan Mikešová, Jana Neckář, Jan Houštěk, Josef Pravenec, Michal Mráček, Tomáš Biomedicines Article Mutations of the TMEM70 gene disrupt the biogenesis of the ATP synthase and represent the most frequent cause of autosomal recessive encephalo-cardio-myopathy with neonatal onset. Patient tissues show isolated defects in the ATP synthase, leading to the impaired mitochondrial synthesis of ATP and insufficient energy provision. In the current study, we tested the efficiency of gene complementation by using a transgenic rescue approach in spontaneously hypertensive rats with the targeted Tmem70 gene (SHR-Tmem70(ko)(/ko)), which leads to embryonic lethality. We generated SHR-Tmem70(ko)(/ko) knockout rats expressing the Tmem70 wild-type transgene (SHR-Tmem70(ko)(/ko,tg/tg)) under the control of the EF-1α universal promoter. Transgenic rescue resulted in viable animals that showed the variable expression of the Tmem70 transgene across the range of tissues and only minor differences in terms of the growth parameters. The TMEM70 protein was restored to 16–49% of the controls in the liver and heart, which was sufficient for the full biochemical complementation of ATP synthase biogenesis as well as for mitochondrial energetic function in the liver. In the heart, we observed partial biochemical complementation, especially in SHR-Tmem70(ko)(/ko,tg/0) hemizygotes. As a result, this led to a minor impairment in left ventricle function. Overall, the transgenic rescue of Tmem70 in SHR-Tmem70(ko)(/ko) knockout rats resulted in the efficient complementation of ATP synthase deficiency and thus in the successful genetic treatment of an otherwise fatal mitochondrial disorder. MDPI 2022-01-26 /pmc/articles/PMC8869460/ /pubmed/35203486 http://dx.doi.org/10.3390/biomedicines10020276 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
Marković, Aleksandra
Tauchmannová, Kateřina
Šimáková, Miroslava
Mlejnek, Petr
Kaplanová, Vilma
Pecina, Petr
Pecinová, Alena
Papoušek, František
Liška, František
Šilhavý, Jan
Mikešová, Jana
Neckář, Jan
Houštěk, Josef
Pravenec, Michal
Mráček, Tomáš
Genetic Complementation of ATP Synthase Deficiency Due to Dysfunction of TMEM70 Assembly Factor in Rat
title Genetic Complementation of ATP Synthase Deficiency Due to Dysfunction of TMEM70 Assembly Factor in Rat
title_full Genetic Complementation of ATP Synthase Deficiency Due to Dysfunction of TMEM70 Assembly Factor in Rat
title_fullStr Genetic Complementation of ATP Synthase Deficiency Due to Dysfunction of TMEM70 Assembly Factor in Rat
title_full_unstemmed Genetic Complementation of ATP Synthase Deficiency Due to Dysfunction of TMEM70 Assembly Factor in Rat
title_short Genetic Complementation of ATP Synthase Deficiency Due to Dysfunction of TMEM70 Assembly Factor in Rat
title_sort genetic complementation of atp synthase deficiency due to dysfunction of tmem70 assembly factor in rat
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8869460/
https://www.ncbi.nlm.nih.gov/pubmed/35203486
http://dx.doi.org/10.3390/biomedicines10020276
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