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Aberrant methylation of tRNAs links cellular stress to neuro-developmental disorders

Mutations in the cytosine-5 RNA methyltransferase NSun2 cause microcephaly and other neurological abnormalities in mice and human. How post-transcriptional methylation contributes to the human disease is currently unknown. By comparing gene expression data with global cytosine-5 RNA methylomes in pa...

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Autores principales: Blanco, Sandra, Dietmann, Sabine, Flores, Joana V, Hussain, Shobbir, Kutter, Claudia, Humphreys, Peter, Lukk, Margus, Lombard, Patrick, Treps, Lucas, Popis, Martyna, Kellner, Stefanie, Hölter, Sabine M, Garrett, Lillian, Wurst, Wolfgang, Becker, Lore, Klopstock, Thomas, Fuchs, Helmut, Gailus-Durner, Valerie, Hrabĕ de Angelis, Martin, Káradóttir, Ragnhildur T, Helm, Mark, Ule, Jernej, Gleeson, Joseph G, Odom, Duncan T, Frye, Michaela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4195770/
https://www.ncbi.nlm.nih.gov/pubmed/25063673
http://dx.doi.org/10.15252/embj.201489282
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author Blanco, Sandra
Dietmann, Sabine
Flores, Joana V
Hussain, Shobbir
Kutter, Claudia
Humphreys, Peter
Lukk, Margus
Lombard, Patrick
Treps, Lucas
Popis, Martyna
Kellner, Stefanie
Hölter, Sabine M
Garrett, Lillian
Wurst, Wolfgang
Becker, Lore
Klopstock, Thomas
Fuchs, Helmut
Gailus-Durner, Valerie
Hrabĕ de Angelis, Martin
Káradóttir, Ragnhildur T
Helm, Mark
Ule, Jernej
Gleeson, Joseph G
Odom, Duncan T
Frye, Michaela
author_facet Blanco, Sandra
Dietmann, Sabine
Flores, Joana V
Hussain, Shobbir
Kutter, Claudia
Humphreys, Peter
Lukk, Margus
Lombard, Patrick
Treps, Lucas
Popis, Martyna
Kellner, Stefanie
Hölter, Sabine M
Garrett, Lillian
Wurst, Wolfgang
Becker, Lore
Klopstock, Thomas
Fuchs, Helmut
Gailus-Durner, Valerie
Hrabĕ de Angelis, Martin
Káradóttir, Ragnhildur T
Helm, Mark
Ule, Jernej
Gleeson, Joseph G
Odom, Duncan T
Frye, Michaela
author_sort Blanco, Sandra
collection PubMed
description Mutations in the cytosine-5 RNA methyltransferase NSun2 cause microcephaly and other neurological abnormalities in mice and human. How post-transcriptional methylation contributes to the human disease is currently unknown. By comparing gene expression data with global cytosine-5 RNA methylomes in patient fibroblasts and NSun2-deficient mice, we find that loss of cytosine-5 RNA methylation increases the angiogenin-mediated endonucleolytic cleavage of transfer RNAs (tRNA) leading to an accumulation of 5′ tRNA-derived small RNA fragments. Accumulation of 5′ tRNA fragments in the absence of NSun2 reduces protein translation rates and activates stress pathways leading to reduced cell size and increased apoptosis of cortical, hippocampal and striatal neurons. Mechanistically, we demonstrate that angiogenin binds with higher affinity to tRNAs lacking site-specific NSun2-mediated methylation and that the presence of 5′ tRNA fragments is sufficient and required to trigger cellular stress responses. Furthermore, the enhanced sensitivity of NSun2-deficient brains to oxidative stress can be rescued through inhibition of angiogenin during embryogenesis. In conclusion, failure in NSun2-mediated tRNA methylation contributes to human diseases via stress-induced RNA cleavage.
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spelling pubmed-41957702015-09-17 Aberrant methylation of tRNAs links cellular stress to neuro-developmental disorders Blanco, Sandra Dietmann, Sabine Flores, Joana V Hussain, Shobbir Kutter, Claudia Humphreys, Peter Lukk, Margus Lombard, Patrick Treps, Lucas Popis, Martyna Kellner, Stefanie Hölter, Sabine M Garrett, Lillian Wurst, Wolfgang Becker, Lore Klopstock, Thomas Fuchs, Helmut Gailus-Durner, Valerie Hrabĕ de Angelis, Martin Káradóttir, Ragnhildur T Helm, Mark Ule, Jernej Gleeson, Joseph G Odom, Duncan T Frye, Michaela EMBO J Articles Mutations in the cytosine-5 RNA methyltransferase NSun2 cause microcephaly and other neurological abnormalities in mice and human. How post-transcriptional methylation contributes to the human disease is currently unknown. By comparing gene expression data with global cytosine-5 RNA methylomes in patient fibroblasts and NSun2-deficient mice, we find that loss of cytosine-5 RNA methylation increases the angiogenin-mediated endonucleolytic cleavage of transfer RNAs (tRNA) leading to an accumulation of 5′ tRNA-derived small RNA fragments. Accumulation of 5′ tRNA fragments in the absence of NSun2 reduces protein translation rates and activates stress pathways leading to reduced cell size and increased apoptosis of cortical, hippocampal and striatal neurons. Mechanistically, we demonstrate that angiogenin binds with higher affinity to tRNAs lacking site-specific NSun2-mediated methylation and that the presence of 5′ tRNA fragments is sufficient and required to trigger cellular stress responses. Furthermore, the enhanced sensitivity of NSun2-deficient brains to oxidative stress can be rescued through inhibition of angiogenin during embryogenesis. In conclusion, failure in NSun2-mediated tRNA methylation contributes to human diseases via stress-induced RNA cleavage. BlackWell Publishing Ltd 2014-09-17 2014-07-25 /pmc/articles/PMC4195770/ /pubmed/25063673 http://dx.doi.org/10.15252/embj.201489282 Text en © 2014 The Authors. Published under the terms of the CC BY 4.0 license http://creativecommons.org/licenses/by/4.0/ This is an open access article under the terms of the Creative Commons Attribution 4.0 License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Blanco, Sandra
Dietmann, Sabine
Flores, Joana V
Hussain, Shobbir
Kutter, Claudia
Humphreys, Peter
Lukk, Margus
Lombard, Patrick
Treps, Lucas
Popis, Martyna
Kellner, Stefanie
Hölter, Sabine M
Garrett, Lillian
Wurst, Wolfgang
Becker, Lore
Klopstock, Thomas
Fuchs, Helmut
Gailus-Durner, Valerie
Hrabĕ de Angelis, Martin
Káradóttir, Ragnhildur T
Helm, Mark
Ule, Jernej
Gleeson, Joseph G
Odom, Duncan T
Frye, Michaela
Aberrant methylation of tRNAs links cellular stress to neuro-developmental disorders
title Aberrant methylation of tRNAs links cellular stress to neuro-developmental disorders
title_full Aberrant methylation of tRNAs links cellular stress to neuro-developmental disorders
title_fullStr Aberrant methylation of tRNAs links cellular stress to neuro-developmental disorders
title_full_unstemmed Aberrant methylation of tRNAs links cellular stress to neuro-developmental disorders
title_short Aberrant methylation of tRNAs links cellular stress to neuro-developmental disorders
title_sort aberrant methylation of trnas links cellular stress to neuro-developmental disorders
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4195770/
https://www.ncbi.nlm.nih.gov/pubmed/25063673
http://dx.doi.org/10.15252/embj.201489282
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