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Formation of tRNA Wobble Inosine in Humans Is Disrupted by a Millennia-Old Mutation Causing Intellectual Disability

The formation of inosine at the wobble position of eukaryotic tRNAs is an essential modification catalyzed by the ADAT2/ADAT3 complex. In humans, a valine-to-methionine mutation (V144M) in ADAT3 that originated ∼1,600 years ago is the most common cause of autosomal recessive intellectual disability...

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Autores principales: Ramos, Jillian, Han, Lu, Li, Yan, Hagelskamp, Felix, Kellner, Stefanie M., Alkuraya, Fowzan S., Phizicky, Eric M., Fu, Dragony
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6751630/
https://www.ncbi.nlm.nih.gov/pubmed/31263000
http://dx.doi.org/10.1128/MCB.00203-19
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author Ramos, Jillian
Han, Lu
Li, Yan
Hagelskamp, Felix
Kellner, Stefanie M.
Alkuraya, Fowzan S.
Phizicky, Eric M.
Fu, Dragony
author_facet Ramos, Jillian
Han, Lu
Li, Yan
Hagelskamp, Felix
Kellner, Stefanie M.
Alkuraya, Fowzan S.
Phizicky, Eric M.
Fu, Dragony
author_sort Ramos, Jillian
collection PubMed
description The formation of inosine at the wobble position of eukaryotic tRNAs is an essential modification catalyzed by the ADAT2/ADAT3 complex. In humans, a valine-to-methionine mutation (V144M) in ADAT3 that originated ∼1,600 years ago is the most common cause of autosomal recessive intellectual disability (ID) in Arabia. While the mutation is predicted to affect protein structure, the molecular and cellular effects of the V144M mutation are unknown. Here, we show that cell lines derived from ID-affected individuals expressing only ADAT3-V144M exhibit decreased wobble inosine in certain tRNAs. Moreover, extracts from the same cell lines of ID-affected individuals display a severe reduction in tRNA deaminase activity. While ADAT3-V144M maintains interactions with ADAT2, the purified ADAT2/3-V144M complexes exhibit defects in activity. Notably, ADAT3-V144M exhibits an increased propensity to form aggregates associated with cytoplasmic chaperonins that can be suppressed by ADAT2 overexpression. These results identify a key role for ADAT2-dependent folding of ADAT3 in wobble inosine modification and indicate that proper formation of an active ADAT2/3 complex is crucial for proper neurodevelopment.
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spelling pubmed-67516302019-09-24 Formation of tRNA Wobble Inosine in Humans Is Disrupted by a Millennia-Old Mutation Causing Intellectual Disability Ramos, Jillian Han, Lu Li, Yan Hagelskamp, Felix Kellner, Stefanie M. Alkuraya, Fowzan S. Phizicky, Eric M. Fu, Dragony Mol Cell Biol Research Article The formation of inosine at the wobble position of eukaryotic tRNAs is an essential modification catalyzed by the ADAT2/ADAT3 complex. In humans, a valine-to-methionine mutation (V144M) in ADAT3 that originated ∼1,600 years ago is the most common cause of autosomal recessive intellectual disability (ID) in Arabia. While the mutation is predicted to affect protein structure, the molecular and cellular effects of the V144M mutation are unknown. Here, we show that cell lines derived from ID-affected individuals expressing only ADAT3-V144M exhibit decreased wobble inosine in certain tRNAs. Moreover, extracts from the same cell lines of ID-affected individuals display a severe reduction in tRNA deaminase activity. While ADAT3-V144M maintains interactions with ADAT2, the purified ADAT2/3-V144M complexes exhibit defects in activity. Notably, ADAT3-V144M exhibits an increased propensity to form aggregates associated with cytoplasmic chaperonins that can be suppressed by ADAT2 overexpression. These results identify a key role for ADAT2-dependent folding of ADAT3 in wobble inosine modification and indicate that proper formation of an active ADAT2/3 complex is crucial for proper neurodevelopment. American Society for Microbiology 2019-09-11 /pmc/articles/PMC6751630/ /pubmed/31263000 http://dx.doi.org/10.1128/MCB.00203-19 Text en Copyright © 2019 Ramos et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Ramos, Jillian
Han, Lu
Li, Yan
Hagelskamp, Felix
Kellner, Stefanie M.
Alkuraya, Fowzan S.
Phizicky, Eric M.
Fu, Dragony
Formation of tRNA Wobble Inosine in Humans Is Disrupted by a Millennia-Old Mutation Causing Intellectual Disability
title Formation of tRNA Wobble Inosine in Humans Is Disrupted by a Millennia-Old Mutation Causing Intellectual Disability
title_full Formation of tRNA Wobble Inosine in Humans Is Disrupted by a Millennia-Old Mutation Causing Intellectual Disability
title_fullStr Formation of tRNA Wobble Inosine in Humans Is Disrupted by a Millennia-Old Mutation Causing Intellectual Disability
title_full_unstemmed Formation of tRNA Wobble Inosine in Humans Is Disrupted by a Millennia-Old Mutation Causing Intellectual Disability
title_short Formation of tRNA Wobble Inosine in Humans Is Disrupted by a Millennia-Old Mutation Causing Intellectual Disability
title_sort formation of trna wobble inosine in humans is disrupted by a millennia-old mutation causing intellectual disability
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6751630/
https://www.ncbi.nlm.nih.gov/pubmed/31263000
http://dx.doi.org/10.1128/MCB.00203-19
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