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RCC1L (WBSCR16) isoforms coordinate mitochondrial ribosome assembly through their interaction with GTPases

Mitochondrial translation defects can be due to mutations affecting mitochondrial- or nuclear-encoded components. The number of known nuclear genes involved in mitochondrial translation has significantly increased in the past years. RCC1L (WBSCR16), a putative GDP/GTP exchange factor, has recently b...

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Autores principales: Reyes, Aurelio, Favia, Paola, Vidoni, Sara, Petruzzella, Vittoria, Zeviani, Massimo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7423155/
https://www.ncbi.nlm.nih.gov/pubmed/32735630
http://dx.doi.org/10.1371/journal.pgen.1008923
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author Reyes, Aurelio
Favia, Paola
Vidoni, Sara
Petruzzella, Vittoria
Zeviani, Massimo
author_facet Reyes, Aurelio
Favia, Paola
Vidoni, Sara
Petruzzella, Vittoria
Zeviani, Massimo
author_sort Reyes, Aurelio
collection PubMed
description Mitochondrial translation defects can be due to mutations affecting mitochondrial- or nuclear-encoded components. The number of known nuclear genes involved in mitochondrial translation has significantly increased in the past years. RCC1L (WBSCR16), a putative GDP/GTP exchange factor, has recently been described to interact with the mitochondrial large ribosomal subunit. In humans, three different RCC1L isoforms have been identified that originate from alternative splicing but share the same N-terminus, RCC1L(V1), RCC1L(V2) and RCC1L(V3). All three isoforms were exclusively localized to mitochondria, interacted with its inner membrane and could associate with homopolymeric oligos to different extent. Mitochondrial immunoprecipitation experiments showed that RCC1L(V1) and RCC1L(V3) associated with the mitochondrial large and small ribosomal subunit, respectively, while no significant association was observed for RCC1L(V2). Overexpression and silencing of RCC1L(V1) or RCC1L(V3) led to mitoribosome biogenesis defects that resulted in decreased translation. Indeed, significant changes in steady-state levels and distribution on isokinetic sucrose gradients were detected not only for mitoribosome proteins but also for GTPases, (GTPBP10, ERAL1 and C4orf14), and pseudouridylation proteins, (TRUB2, RPUSD3 and RPUSD4). All in all, our data suggest that RCC1L is essential for mitochondrial function and that the coordination of at least two isoforms is essential for proper ribosomal assembly.
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spelling pubmed-74231552020-08-20 RCC1L (WBSCR16) isoforms coordinate mitochondrial ribosome assembly through their interaction with GTPases Reyes, Aurelio Favia, Paola Vidoni, Sara Petruzzella, Vittoria Zeviani, Massimo PLoS Genet Research Article Mitochondrial translation defects can be due to mutations affecting mitochondrial- or nuclear-encoded components. The number of known nuclear genes involved in mitochondrial translation has significantly increased in the past years. RCC1L (WBSCR16), a putative GDP/GTP exchange factor, has recently been described to interact with the mitochondrial large ribosomal subunit. In humans, three different RCC1L isoforms have been identified that originate from alternative splicing but share the same N-terminus, RCC1L(V1), RCC1L(V2) and RCC1L(V3). All three isoforms were exclusively localized to mitochondria, interacted with its inner membrane and could associate with homopolymeric oligos to different extent. Mitochondrial immunoprecipitation experiments showed that RCC1L(V1) and RCC1L(V3) associated with the mitochondrial large and small ribosomal subunit, respectively, while no significant association was observed for RCC1L(V2). Overexpression and silencing of RCC1L(V1) or RCC1L(V3) led to mitoribosome biogenesis defects that resulted in decreased translation. Indeed, significant changes in steady-state levels and distribution on isokinetic sucrose gradients were detected not only for mitoribosome proteins but also for GTPases, (GTPBP10, ERAL1 and C4orf14), and pseudouridylation proteins, (TRUB2, RPUSD3 and RPUSD4). All in all, our data suggest that RCC1L is essential for mitochondrial function and that the coordination of at least two isoforms is essential for proper ribosomal assembly. Public Library of Science 2020-07-31 /pmc/articles/PMC7423155/ /pubmed/32735630 http://dx.doi.org/10.1371/journal.pgen.1008923 Text en © 2020 Reyes et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Reyes, Aurelio
Favia, Paola
Vidoni, Sara
Petruzzella, Vittoria
Zeviani, Massimo
RCC1L (WBSCR16) isoforms coordinate mitochondrial ribosome assembly through their interaction with GTPases
title RCC1L (WBSCR16) isoforms coordinate mitochondrial ribosome assembly through their interaction with GTPases
title_full RCC1L (WBSCR16) isoforms coordinate mitochondrial ribosome assembly through their interaction with GTPases
title_fullStr RCC1L (WBSCR16) isoforms coordinate mitochondrial ribosome assembly through their interaction with GTPases
title_full_unstemmed RCC1L (WBSCR16) isoforms coordinate mitochondrial ribosome assembly through their interaction with GTPases
title_short RCC1L (WBSCR16) isoforms coordinate mitochondrial ribosome assembly through their interaction with GTPases
title_sort rcc1l (wbscr16) isoforms coordinate mitochondrial ribosome assembly through their interaction with gtpases
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7423155/
https://www.ncbi.nlm.nih.gov/pubmed/32735630
http://dx.doi.org/10.1371/journal.pgen.1008923
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