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Dynamic interplay between RPL3- and RPL3L-containing ribosomes modulates mitochondrial activity in the mammalian heart

The existence of naturally occurring ribosome heterogeneity is now a well-acknowledged phenomenon. However, whether this heterogeneity leads to functionally diverse ‘specialized ribosomes’ is still a controversial topic. Here, we explore the biological function of RPL3L (uL3L), a ribosomal protein (...

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Autores principales: Milenkovic, Ivan, Santos Vieira, Helaine Graziele, Lucas, Morghan C, Ruiz-Orera, Jorge, Patone, Giannino, Kesteven, Scott, Wu, Jianxin, Feneley, Michael, Espadas, Guadalupe, Sabidó, Eduard, Hübner, Norbert, van Heesch, Sebastiaan, Völkers, Mirko, Novoa, Eva Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10287911/
https://www.ncbi.nlm.nih.gov/pubmed/36882085
http://dx.doi.org/10.1093/nar/gkad121
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author Milenkovic, Ivan
Santos Vieira, Helaine Graziele
Lucas, Morghan C
Ruiz-Orera, Jorge
Patone, Giannino
Kesteven, Scott
Wu, Jianxin
Feneley, Michael
Espadas, Guadalupe
Sabidó, Eduard
Hübner, Norbert
van Heesch, Sebastiaan
Völkers, Mirko
Novoa, Eva Maria
author_facet Milenkovic, Ivan
Santos Vieira, Helaine Graziele
Lucas, Morghan C
Ruiz-Orera, Jorge
Patone, Giannino
Kesteven, Scott
Wu, Jianxin
Feneley, Michael
Espadas, Guadalupe
Sabidó, Eduard
Hübner, Norbert
van Heesch, Sebastiaan
Völkers, Mirko
Novoa, Eva Maria
author_sort Milenkovic, Ivan
collection PubMed
description The existence of naturally occurring ribosome heterogeneity is now a well-acknowledged phenomenon. However, whether this heterogeneity leads to functionally diverse ‘specialized ribosomes’ is still a controversial topic. Here, we explore the biological function of RPL3L (uL3L), a ribosomal protein (RP) paralogue of RPL3 (uL3) that is exclusively expressed in skeletal muscle and heart tissues, by generating a viable homozygous Rpl3l knockout mouse strain. We identify a rescue mechanism in which, upon RPL3L depletion, RPL3 becomes up-regulated, yielding RPL3-containing ribosomes instead of RPL3L-containing ribosomes that are typically found in cardiomyocytes. Using both ribosome profiling (Ribo-seq) and a novel orthogonal approach consisting of ribosome pulldown coupled to nanopore sequencing (Nano-TRAP), we find that RPL3L modulates neither translational efficiency nor ribosome affinity towards a specific subset of transcripts. In contrast, we show that depletion of RPL3L leads to increased ribosome–mitochondria interactions in cardiomyocytes, which is accompanied by a significant increase in ATP levels, potentially as a result of fine-tuning of mitochondrial activity. Our results demonstrate that the existence of tissue-specific RP paralogues does not necessarily lead to enhanced translation of specific transcripts or modulation of translational output. Instead, we reveal a complex cellular scenario in which RPL3L modulates the expression of RPL3, which in turn affects ribosomal subcellular localization and, ultimately, mitochondrial activity.
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spelling pubmed-102879112023-06-24 Dynamic interplay between RPL3- and RPL3L-containing ribosomes modulates mitochondrial activity in the mammalian heart Milenkovic, Ivan Santos Vieira, Helaine Graziele Lucas, Morghan C Ruiz-Orera, Jorge Patone, Giannino Kesteven, Scott Wu, Jianxin Feneley, Michael Espadas, Guadalupe Sabidó, Eduard Hübner, Norbert van Heesch, Sebastiaan Völkers, Mirko Novoa, Eva Maria Nucleic Acids Res NAR Breakthrough Article The existence of naturally occurring ribosome heterogeneity is now a well-acknowledged phenomenon. However, whether this heterogeneity leads to functionally diverse ‘specialized ribosomes’ is still a controversial topic. Here, we explore the biological function of RPL3L (uL3L), a ribosomal protein (RP) paralogue of RPL3 (uL3) that is exclusively expressed in skeletal muscle and heart tissues, by generating a viable homozygous Rpl3l knockout mouse strain. We identify a rescue mechanism in which, upon RPL3L depletion, RPL3 becomes up-regulated, yielding RPL3-containing ribosomes instead of RPL3L-containing ribosomes that are typically found in cardiomyocytes. Using both ribosome profiling (Ribo-seq) and a novel orthogonal approach consisting of ribosome pulldown coupled to nanopore sequencing (Nano-TRAP), we find that RPL3L modulates neither translational efficiency nor ribosome affinity towards a specific subset of transcripts. In contrast, we show that depletion of RPL3L leads to increased ribosome–mitochondria interactions in cardiomyocytes, which is accompanied by a significant increase in ATP levels, potentially as a result of fine-tuning of mitochondrial activity. Our results demonstrate that the existence of tissue-specific RP paralogues does not necessarily lead to enhanced translation of specific transcripts or modulation of translational output. Instead, we reveal a complex cellular scenario in which RPL3L modulates the expression of RPL3, which in turn affects ribosomal subcellular localization and, ultimately, mitochondrial activity. Oxford University Press 2023-03-07 /pmc/articles/PMC10287911/ /pubmed/36882085 http://dx.doi.org/10.1093/nar/gkad121 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle NAR Breakthrough Article
Milenkovic, Ivan
Santos Vieira, Helaine Graziele
Lucas, Morghan C
Ruiz-Orera, Jorge
Patone, Giannino
Kesteven, Scott
Wu, Jianxin
Feneley, Michael
Espadas, Guadalupe
Sabidó, Eduard
Hübner, Norbert
van Heesch, Sebastiaan
Völkers, Mirko
Novoa, Eva Maria
Dynamic interplay between RPL3- and RPL3L-containing ribosomes modulates mitochondrial activity in the mammalian heart
title Dynamic interplay between RPL3- and RPL3L-containing ribosomes modulates mitochondrial activity in the mammalian heart
title_full Dynamic interplay between RPL3- and RPL3L-containing ribosomes modulates mitochondrial activity in the mammalian heart
title_fullStr Dynamic interplay between RPL3- and RPL3L-containing ribosomes modulates mitochondrial activity in the mammalian heart
title_full_unstemmed Dynamic interplay between RPL3- and RPL3L-containing ribosomes modulates mitochondrial activity in the mammalian heart
title_short Dynamic interplay between RPL3- and RPL3L-containing ribosomes modulates mitochondrial activity in the mammalian heart
title_sort dynamic interplay between rpl3- and rpl3l-containing ribosomes modulates mitochondrial activity in the mammalian heart
topic NAR Breakthrough Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10287911/
https://www.ncbi.nlm.nih.gov/pubmed/36882085
http://dx.doi.org/10.1093/nar/gkad121
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