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Unleashing a novel function of Endonuclease G in mitochondrial genome instability

Having its genome makes the mitochondrion a unique and semiautonomous organelle within cells. Mammalian mitochondrial DNA (mtDNA) is a double-stranded closed circular molecule of about 16 kb coding for 37 genes. Mutations, including deletions in the mitochondrial genome, can culminate in different h...

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Autores principales: Dahal, Sumedha, Siddiqua, Humaira, Sharma, Shivangi, Babu, Ravi K, Rathore, Diksha, Sharma, Sheetal, Raghavan, Sathees C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9711528/
https://www.ncbi.nlm.nih.gov/pubmed/36394256
http://dx.doi.org/10.7554/eLife.69916
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author Dahal, Sumedha
Siddiqua, Humaira
Sharma, Shivangi
Babu, Ravi K
Rathore, Diksha
Sharma, Sheetal
Raghavan, Sathees C
author_facet Dahal, Sumedha
Siddiqua, Humaira
Sharma, Shivangi
Babu, Ravi K
Rathore, Diksha
Sharma, Sheetal
Raghavan, Sathees C
author_sort Dahal, Sumedha
collection PubMed
description Having its genome makes the mitochondrion a unique and semiautonomous organelle within cells. Mammalian mitochondrial DNA (mtDNA) is a double-stranded closed circular molecule of about 16 kb coding for 37 genes. Mutations, including deletions in the mitochondrial genome, can culminate in different human diseases. Mapping the deletion junctions suggests that the breakpoints are generally seen at hotspots. ‘9 bp deletion’ (8271–8281), seen in the intergenic region of cytochrome c oxidase II/tRNA(Lys), is the most common mitochondrial deletion. While it is associated with several diseases like myopathy, dystonia, and hepatocellular carcinoma, it has also been used as an evolutionary marker. However, the mechanism responsible for its fragility is unclear. In the current study, we show that Endonuclease G, a mitochondrial nuclease responsible for nonspecific cleavage of nuclear DNA during apoptosis, can induce breaks at sequences associated with ‘9 bp deletion’ when it is present on a plasmid or in the mitochondrial genome. Through a series of in vitro and intracellular studies, we show that Endonuclease G binds to G-quadruplex structures formed at the hotspot and induces DNA breaks. Therefore, we uncover a new role for Endonuclease G in generating mtDNA deletions, which depends on the formation of G4 DNA within the mitochondrial genome. In summary, we identify a novel property of Endonuclease G, besides its role in apoptosis and the recently described ‘elimination of paternal mitochondria during fertilisation.
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spelling pubmed-97115282022-12-01 Unleashing a novel function of Endonuclease G in mitochondrial genome instability Dahal, Sumedha Siddiqua, Humaira Sharma, Shivangi Babu, Ravi K Rathore, Diksha Sharma, Sheetal Raghavan, Sathees C eLife Cell Biology Having its genome makes the mitochondrion a unique and semiautonomous organelle within cells. Mammalian mitochondrial DNA (mtDNA) is a double-stranded closed circular molecule of about 16 kb coding for 37 genes. Mutations, including deletions in the mitochondrial genome, can culminate in different human diseases. Mapping the deletion junctions suggests that the breakpoints are generally seen at hotspots. ‘9 bp deletion’ (8271–8281), seen in the intergenic region of cytochrome c oxidase II/tRNA(Lys), is the most common mitochondrial deletion. While it is associated with several diseases like myopathy, dystonia, and hepatocellular carcinoma, it has also been used as an evolutionary marker. However, the mechanism responsible for its fragility is unclear. In the current study, we show that Endonuclease G, a mitochondrial nuclease responsible for nonspecific cleavage of nuclear DNA during apoptosis, can induce breaks at sequences associated with ‘9 bp deletion’ when it is present on a plasmid or in the mitochondrial genome. Through a series of in vitro and intracellular studies, we show that Endonuclease G binds to G-quadruplex structures formed at the hotspot and induces DNA breaks. Therefore, we uncover a new role for Endonuclease G in generating mtDNA deletions, which depends on the formation of G4 DNA within the mitochondrial genome. In summary, we identify a novel property of Endonuclease G, besides its role in apoptosis and the recently described ‘elimination of paternal mitochondria during fertilisation. eLife Sciences Publications, Ltd 2022-11-17 /pmc/articles/PMC9711528/ /pubmed/36394256 http://dx.doi.org/10.7554/eLife.69916 Text en © 2022, Dahal et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Dahal, Sumedha
Siddiqua, Humaira
Sharma, Shivangi
Babu, Ravi K
Rathore, Diksha
Sharma, Sheetal
Raghavan, Sathees C
Unleashing a novel function of Endonuclease G in mitochondrial genome instability
title Unleashing a novel function of Endonuclease G in mitochondrial genome instability
title_full Unleashing a novel function of Endonuclease G in mitochondrial genome instability
title_fullStr Unleashing a novel function of Endonuclease G in mitochondrial genome instability
title_full_unstemmed Unleashing a novel function of Endonuclease G in mitochondrial genome instability
title_short Unleashing a novel function of Endonuclease G in mitochondrial genome instability
title_sort unleashing a novel function of endonuclease g in mitochondrial genome instability
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9711528/
https://www.ncbi.nlm.nih.gov/pubmed/36394256
http://dx.doi.org/10.7554/eLife.69916
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