Cargando…

A 5′ UTR GGN repeat controls localisation and translation of a potassium leak channel mRNA through G-quadruplex formation

RNA G-quadruplexes (G4s) are secondary structures proposed to function as regulators of post-transcriptional mRNA localisation and translation. G4s within some neuronal mRNAs are known to control distal localisation and local translation, contributing to distinct local proteomes that facilitate the...

Descripción completa

Detalles Bibliográficos
Autores principales: Maltby, Connor J, Schofield, James P R, Houghton, Steven D, O’Kelly, Ita, Vargas-Caballero, Mariana, Deinhardt, Katrin, Coldwell, Mark J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7515701/
https://www.ncbi.nlm.nih.gov/pubmed/32870280
http://dx.doi.org/10.1093/nar/gkaa699
_version_ 1783586856066088960
author Maltby, Connor J
Schofield, James P R
Houghton, Steven D
O’Kelly, Ita
Vargas-Caballero, Mariana
Deinhardt, Katrin
Coldwell, Mark J
author_facet Maltby, Connor J
Schofield, James P R
Houghton, Steven D
O’Kelly, Ita
Vargas-Caballero, Mariana
Deinhardt, Katrin
Coldwell, Mark J
author_sort Maltby, Connor J
collection PubMed
description RNA G-quadruplexes (G4s) are secondary structures proposed to function as regulators of post-transcriptional mRNA localisation and translation. G4s within some neuronal mRNAs are known to control distal localisation and local translation, contributing to distinct local proteomes that facilitate the synaptic remodelling attributed to normal cellular function. In this study, we characterise the G4 formation of a (GGN)(13) repeat found within the 5′ UTR of the potassium 2-pore domain leak channel Task3 mRNA. Biophysical analyses show that this (GGN)(13) repeat forms a parallel G4 in vitro exhibiting the stereotypical potassium specificity of G4s, remaining thermostable under physiological ionic conditions. Through mouse brain tissue G4-RNA immunoprecipitation, we further confirm that Task3 mRNA forms a G4 structure in vivo. The G4 is inhibitory to translation of Task3 in vitro and is overcome through activity of a G4-specific helicase DHX36, increasing K(+) leak currents and membrane hyperpolarisation in HEK293 cells. Further, we observe that this G4 is fundamental to ensuring delivery of Task3 mRNA to distal primary cortical neurites. It has been shown that aberrant Task3 expression correlates with neuronal dysfunction, we therefore posit that this G4 is important in regulated local expression of Task3 leak channels that maintain K(+) leak within neurons.
format Online
Article
Text
id pubmed-7515701
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-75157012020-09-30 A 5′ UTR GGN repeat controls localisation and translation of a potassium leak channel mRNA through G-quadruplex formation Maltby, Connor J Schofield, James P R Houghton, Steven D O’Kelly, Ita Vargas-Caballero, Mariana Deinhardt, Katrin Coldwell, Mark J Nucleic Acids Res Molecular Biology RNA G-quadruplexes (G4s) are secondary structures proposed to function as regulators of post-transcriptional mRNA localisation and translation. G4s within some neuronal mRNAs are known to control distal localisation and local translation, contributing to distinct local proteomes that facilitate the synaptic remodelling attributed to normal cellular function. In this study, we characterise the G4 formation of a (GGN)(13) repeat found within the 5′ UTR of the potassium 2-pore domain leak channel Task3 mRNA. Biophysical analyses show that this (GGN)(13) repeat forms a parallel G4 in vitro exhibiting the stereotypical potassium specificity of G4s, remaining thermostable under physiological ionic conditions. Through mouse brain tissue G4-RNA immunoprecipitation, we further confirm that Task3 mRNA forms a G4 structure in vivo. The G4 is inhibitory to translation of Task3 in vitro and is overcome through activity of a G4-specific helicase DHX36, increasing K(+) leak currents and membrane hyperpolarisation in HEK293 cells. Further, we observe that this G4 is fundamental to ensuring delivery of Task3 mRNA to distal primary cortical neurites. It has been shown that aberrant Task3 expression correlates with neuronal dysfunction, we therefore posit that this G4 is important in regulated local expression of Task3 leak channels that maintain K(+) leak within neurons. Oxford University Press 2020-09-01 /pmc/articles/PMC7515701/ /pubmed/32870280 http://dx.doi.org/10.1093/nar/gkaa699 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of Nucleic Acids Research. 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 reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Molecular Biology
Maltby, Connor J
Schofield, James P R
Houghton, Steven D
O’Kelly, Ita
Vargas-Caballero, Mariana
Deinhardt, Katrin
Coldwell, Mark J
A 5′ UTR GGN repeat controls localisation and translation of a potassium leak channel mRNA through G-quadruplex formation
title A 5′ UTR GGN repeat controls localisation and translation of a potassium leak channel mRNA through G-quadruplex formation
title_full A 5′ UTR GGN repeat controls localisation and translation of a potassium leak channel mRNA through G-quadruplex formation
title_fullStr A 5′ UTR GGN repeat controls localisation and translation of a potassium leak channel mRNA through G-quadruplex formation
title_full_unstemmed A 5′ UTR GGN repeat controls localisation and translation of a potassium leak channel mRNA through G-quadruplex formation
title_short A 5′ UTR GGN repeat controls localisation and translation of a potassium leak channel mRNA through G-quadruplex formation
title_sort 5′ utr ggn repeat controls localisation and translation of a potassium leak channel mrna through g-quadruplex formation
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7515701/
https://www.ncbi.nlm.nih.gov/pubmed/32870280
http://dx.doi.org/10.1093/nar/gkaa699
work_keys_str_mv AT maltbyconnorj a5utrggnrepeatcontrolslocalisationandtranslationofapotassiumleakchannelmrnathroughgquadruplexformation
AT schofieldjamespr a5utrggnrepeatcontrolslocalisationandtranslationofapotassiumleakchannelmrnathroughgquadruplexformation
AT houghtonstevend a5utrggnrepeatcontrolslocalisationandtranslationofapotassiumleakchannelmrnathroughgquadruplexformation
AT okellyita a5utrggnrepeatcontrolslocalisationandtranslationofapotassiumleakchannelmrnathroughgquadruplexformation
AT vargascaballeromariana a5utrggnrepeatcontrolslocalisationandtranslationofapotassiumleakchannelmrnathroughgquadruplexformation
AT deinhardtkatrin a5utrggnrepeatcontrolslocalisationandtranslationofapotassiumleakchannelmrnathroughgquadruplexformation
AT coldwellmarkj a5utrggnrepeatcontrolslocalisationandtranslationofapotassiumleakchannelmrnathroughgquadruplexformation
AT maltbyconnorj 5utrggnrepeatcontrolslocalisationandtranslationofapotassiumleakchannelmrnathroughgquadruplexformation
AT schofieldjamespr 5utrggnrepeatcontrolslocalisationandtranslationofapotassiumleakchannelmrnathroughgquadruplexformation
AT houghtonstevend 5utrggnrepeatcontrolslocalisationandtranslationofapotassiumleakchannelmrnathroughgquadruplexformation
AT okellyita 5utrggnrepeatcontrolslocalisationandtranslationofapotassiumleakchannelmrnathroughgquadruplexformation
AT vargascaballeromariana 5utrggnrepeatcontrolslocalisationandtranslationofapotassiumleakchannelmrnathroughgquadruplexformation
AT deinhardtkatrin 5utrggnrepeatcontrolslocalisationandtranslationofapotassiumleakchannelmrnathroughgquadruplexformation
AT coldwellmarkj 5utrggnrepeatcontrolslocalisationandtranslationofapotassiumleakchannelmrnathroughgquadruplexformation