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RRM1 variants cause a mitochondrial DNA maintenance disorder via impaired de novo nucleotide synthesis

Mitochondrial DNA (mtDNA) depletion/deletions syndromes (MDDS) encompass a clinically and etiologically heterogenous group of mitochondrial disorders caused by impaired mtDNA maintenance. Among the most frequent causes of MDDS are defects in nucleoside/nucleotide metabolism, which is critical for sy...

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Autores principales: Shintaku, Jonathan, Pernice, Wolfgang M., Eyaid, Wafaa, GC, Jeevan B., Brown, Zuben P., Juanola-Falgarona, Marti, Torres-Torronteras, Javier, Sommerville, Ewen W., Hellebrekers, Debby M.E.I., Blakely, Emma L., Donaldson, Alan, van de Laar, Ingrid, Leu, Cheng-Shiun, Marti, Ramon, Frank, Joachim, Tanji, Kurenai, Koolen, David A., Rodenburg, Richard J., Chinnery, Patrick F., Smeets, H.J.M., Gorman, Gráinne S., Bonnen, Penelope E., Taylor, Robert W., Hirano, Michio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9246377/
https://www.ncbi.nlm.nih.gov/pubmed/35617047
http://dx.doi.org/10.1172/JCI145660
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author Shintaku, Jonathan
Pernice, Wolfgang M.
Eyaid, Wafaa
GC, Jeevan B.
Brown, Zuben P.
Juanola-Falgarona, Marti
Torres-Torronteras, Javier
Sommerville, Ewen W.
Hellebrekers, Debby M.E.I.
Blakely, Emma L.
Donaldson, Alan
van de Laar, Ingrid
Leu, Cheng-Shiun
Marti, Ramon
Frank, Joachim
Tanji, Kurenai
Koolen, David A.
Rodenburg, Richard J.
Chinnery, Patrick F.
Smeets, H.J.M.
Gorman, Gráinne S.
Bonnen, Penelope E.
Taylor, Robert W.
Hirano, Michio
author_facet Shintaku, Jonathan
Pernice, Wolfgang M.
Eyaid, Wafaa
GC, Jeevan B.
Brown, Zuben P.
Juanola-Falgarona, Marti
Torres-Torronteras, Javier
Sommerville, Ewen W.
Hellebrekers, Debby M.E.I.
Blakely, Emma L.
Donaldson, Alan
van de Laar, Ingrid
Leu, Cheng-Shiun
Marti, Ramon
Frank, Joachim
Tanji, Kurenai
Koolen, David A.
Rodenburg, Richard J.
Chinnery, Patrick F.
Smeets, H.J.M.
Gorman, Gráinne S.
Bonnen, Penelope E.
Taylor, Robert W.
Hirano, Michio
author_sort Shintaku, Jonathan
collection PubMed
description Mitochondrial DNA (mtDNA) depletion/deletions syndromes (MDDS) encompass a clinically and etiologically heterogenous group of mitochondrial disorders caused by impaired mtDNA maintenance. Among the most frequent causes of MDDS are defects in nucleoside/nucleotide metabolism, which is critical for synthesis and homeostasis of the deoxynucleoside triphosphate (dNTP) substrates of mtDNA replication. A central enzyme for generating dNTPs is ribonucleotide reductase, a critical mediator of de novo nucleotide synthesis composed of catalytic RRM1 subunits in complex with RRM2 or p53R2. Here, we report 5 probands from 4 families who presented with ptosis and ophthalmoplegia as well as other clinical manifestations and multiple mtDNA deletions in muscle. We identified 3 RRM1 loss-of-function variants, including a dominant catalytic site variant (NP_001024.1: p.N427K) and 2 homozygous recessive variants at p.R381, which has evolutionarily conserved interactions with the specificity site. Atomistic molecular dynamics simulations indicate mechanisms by which RRM1 variants affect protein structure. Cultured primary skin fibroblasts of probands manifested mtDNA depletion under cycling conditions, indicating impaired de novo nucleotide synthesis. Fibroblasts also exhibited aberrant nucleoside diphosphate and dNTP pools and mtDNA ribonucleotide incorporation. Our data reveal that primary RRM1 deficiency and, by extension, impaired de novo nucleotide synthesis are causes of MDDS.
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spelling pubmed-92463772022-07-02 RRM1 variants cause a mitochondrial DNA maintenance disorder via impaired de novo nucleotide synthesis Shintaku, Jonathan Pernice, Wolfgang M. Eyaid, Wafaa GC, Jeevan B. Brown, Zuben P. Juanola-Falgarona, Marti Torres-Torronteras, Javier Sommerville, Ewen W. Hellebrekers, Debby M.E.I. Blakely, Emma L. Donaldson, Alan van de Laar, Ingrid Leu, Cheng-Shiun Marti, Ramon Frank, Joachim Tanji, Kurenai Koolen, David A. Rodenburg, Richard J. Chinnery, Patrick F. Smeets, H.J.M. Gorman, Gráinne S. Bonnen, Penelope E. Taylor, Robert W. Hirano, Michio J Clin Invest Research Article Mitochondrial DNA (mtDNA) depletion/deletions syndromes (MDDS) encompass a clinically and etiologically heterogenous group of mitochondrial disorders caused by impaired mtDNA maintenance. Among the most frequent causes of MDDS are defects in nucleoside/nucleotide metabolism, which is critical for synthesis and homeostasis of the deoxynucleoside triphosphate (dNTP) substrates of mtDNA replication. A central enzyme for generating dNTPs is ribonucleotide reductase, a critical mediator of de novo nucleotide synthesis composed of catalytic RRM1 subunits in complex with RRM2 or p53R2. Here, we report 5 probands from 4 families who presented with ptosis and ophthalmoplegia as well as other clinical manifestations and multiple mtDNA deletions in muscle. We identified 3 RRM1 loss-of-function variants, including a dominant catalytic site variant (NP_001024.1: p.N427K) and 2 homozygous recessive variants at p.R381, which has evolutionarily conserved interactions with the specificity site. Atomistic molecular dynamics simulations indicate mechanisms by which RRM1 variants affect protein structure. Cultured primary skin fibroblasts of probands manifested mtDNA depletion under cycling conditions, indicating impaired de novo nucleotide synthesis. Fibroblasts also exhibited aberrant nucleoside diphosphate and dNTP pools and mtDNA ribonucleotide incorporation. Our data reveal that primary RRM1 deficiency and, by extension, impaired de novo nucleotide synthesis are causes of MDDS. American Society for Clinical Investigation 2022-07-01 2022-07-01 /pmc/articles/PMC9246377/ /pubmed/35617047 http://dx.doi.org/10.1172/JCI145660 Text en © 2022 Shintaku et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Shintaku, Jonathan
Pernice, Wolfgang M.
Eyaid, Wafaa
GC, Jeevan B.
Brown, Zuben P.
Juanola-Falgarona, Marti
Torres-Torronteras, Javier
Sommerville, Ewen W.
Hellebrekers, Debby M.E.I.
Blakely, Emma L.
Donaldson, Alan
van de Laar, Ingrid
Leu, Cheng-Shiun
Marti, Ramon
Frank, Joachim
Tanji, Kurenai
Koolen, David A.
Rodenburg, Richard J.
Chinnery, Patrick F.
Smeets, H.J.M.
Gorman, Gráinne S.
Bonnen, Penelope E.
Taylor, Robert W.
Hirano, Michio
RRM1 variants cause a mitochondrial DNA maintenance disorder via impaired de novo nucleotide synthesis
title RRM1 variants cause a mitochondrial DNA maintenance disorder via impaired de novo nucleotide synthesis
title_full RRM1 variants cause a mitochondrial DNA maintenance disorder via impaired de novo nucleotide synthesis
title_fullStr RRM1 variants cause a mitochondrial DNA maintenance disorder via impaired de novo nucleotide synthesis
title_full_unstemmed RRM1 variants cause a mitochondrial DNA maintenance disorder via impaired de novo nucleotide synthesis
title_short RRM1 variants cause a mitochondrial DNA maintenance disorder via impaired de novo nucleotide synthesis
title_sort rrm1 variants cause a mitochondrial dna maintenance disorder via impaired de novo nucleotide synthesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9246377/
https://www.ncbi.nlm.nih.gov/pubmed/35617047
http://dx.doi.org/10.1172/JCI145660
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