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Transcriptional buffering and 3ʹUTR lengthening are shaped during human neurodevelopment by shifts in mRNA stability and microRNA load

The contribution of mRNA half-life is commonly overlooked when examining changes in mRNA abundance during development. mRNA levels of some genes are regulated by transcription rate only, but others may be regulated by mRNA half-life only shifts. Furthermore, transcriptional buffering is predicted wh...

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Autores principales: Mufteev, Marat, Rodrigues, Deivid C., Yuki, Kyoko E., Narula, Ashrut, Wei, Wei, Piekna, Alina, Liu, Jiajie, Pasceri, Peter, Rissland, Olivia S., Wilson, Michael D., Ellis, James
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10002768/
https://www.ncbi.nlm.nih.gov/pubmed/36909614
http://dx.doi.org/10.1101/2023.03.01.530249
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author Mufteev, Marat
Rodrigues, Deivid C.
Yuki, Kyoko E.
Narula, Ashrut
Wei, Wei
Piekna, Alina
Liu, Jiajie
Pasceri, Peter
Rissland, Olivia S.
Wilson, Michael D.
Ellis, James
author_facet Mufteev, Marat
Rodrigues, Deivid C.
Yuki, Kyoko E.
Narula, Ashrut
Wei, Wei
Piekna, Alina
Liu, Jiajie
Pasceri, Peter
Rissland, Olivia S.
Wilson, Michael D.
Ellis, James
author_sort Mufteev, Marat
collection PubMed
description The contribution of mRNA half-life is commonly overlooked when examining changes in mRNA abundance during development. mRNA levels of some genes are regulated by transcription rate only, but others may be regulated by mRNA half-life only shifts. Furthermore, transcriptional buffering is predicted when changes in transcription rates have compensating shifts in mRNA half-life resulting in no change to steady-state levels. Likewise, transcriptional boosting should result when changes in transcription rate are accompanied by amplifying half-life shifts. During neurodevelopment there is widespread 3ʹUTR lengthening that could be shaped by differential shifts in the stability of existing short or long 3ʹUTR transcript isoforms. We measured transcription rate and mRNA half-life changes during induced human Pluripotent Stem Cell (iPSC)-derived neuronal development using RATE-seq. During transitions to progenitor and neuron stages, transcriptional buffering occurred in up to 50%, and transcriptional boosting in up to 15%, of genes with changed transcription rates. The remaining changes occurred by transcription rate only or mRNA half-life only shifts. Average mRNA half-life decreased two-fold in neurons relative to iPSCs. Short gene isoforms were more destabilized in neurons and thereby increased the average 3ʹUTR length. Small RNA sequencing captured an increase in microRNA copy number per cell during neurodevelopment. We propose that mRNA destabilization and 3ʹUTR lengthening are driven in part by an increase in microRNA load in neurons. Our findings identify mRNA stability mechanisms in human neurodevelopment that regulate gene and isoform level abundance and provide a precedent for similar post-transcriptional regulatory events as other tissues develop.
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spelling pubmed-100027682023-03-11 Transcriptional buffering and 3ʹUTR lengthening are shaped during human neurodevelopment by shifts in mRNA stability and microRNA load Mufteev, Marat Rodrigues, Deivid C. Yuki, Kyoko E. Narula, Ashrut Wei, Wei Piekna, Alina Liu, Jiajie Pasceri, Peter Rissland, Olivia S. Wilson, Michael D. Ellis, James bioRxiv Article The contribution of mRNA half-life is commonly overlooked when examining changes in mRNA abundance during development. mRNA levels of some genes are regulated by transcription rate only, but others may be regulated by mRNA half-life only shifts. Furthermore, transcriptional buffering is predicted when changes in transcription rates have compensating shifts in mRNA half-life resulting in no change to steady-state levels. Likewise, transcriptional boosting should result when changes in transcription rate are accompanied by amplifying half-life shifts. During neurodevelopment there is widespread 3ʹUTR lengthening that could be shaped by differential shifts in the stability of existing short or long 3ʹUTR transcript isoforms. We measured transcription rate and mRNA half-life changes during induced human Pluripotent Stem Cell (iPSC)-derived neuronal development using RATE-seq. During transitions to progenitor and neuron stages, transcriptional buffering occurred in up to 50%, and transcriptional boosting in up to 15%, of genes with changed transcription rates. The remaining changes occurred by transcription rate only or mRNA half-life only shifts. Average mRNA half-life decreased two-fold in neurons relative to iPSCs. Short gene isoforms were more destabilized in neurons and thereby increased the average 3ʹUTR length. Small RNA sequencing captured an increase in microRNA copy number per cell during neurodevelopment. We propose that mRNA destabilization and 3ʹUTR lengthening are driven in part by an increase in microRNA load in neurons. Our findings identify mRNA stability mechanisms in human neurodevelopment that regulate gene and isoform level abundance and provide a precedent for similar post-transcriptional regulatory events as other tissues develop. Cold Spring Harbor Laboratory 2023-03-01 /pmc/articles/PMC10002768/ /pubmed/36909614 http://dx.doi.org/10.1101/2023.03.01.530249 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Mufteev, Marat
Rodrigues, Deivid C.
Yuki, Kyoko E.
Narula, Ashrut
Wei, Wei
Piekna, Alina
Liu, Jiajie
Pasceri, Peter
Rissland, Olivia S.
Wilson, Michael D.
Ellis, James
Transcriptional buffering and 3ʹUTR lengthening are shaped during human neurodevelopment by shifts in mRNA stability and microRNA load
title Transcriptional buffering and 3ʹUTR lengthening are shaped during human neurodevelopment by shifts in mRNA stability and microRNA load
title_full Transcriptional buffering and 3ʹUTR lengthening are shaped during human neurodevelopment by shifts in mRNA stability and microRNA load
title_fullStr Transcriptional buffering and 3ʹUTR lengthening are shaped during human neurodevelopment by shifts in mRNA stability and microRNA load
title_full_unstemmed Transcriptional buffering and 3ʹUTR lengthening are shaped during human neurodevelopment by shifts in mRNA stability and microRNA load
title_short Transcriptional buffering and 3ʹUTR lengthening are shaped during human neurodevelopment by shifts in mRNA stability and microRNA load
title_sort transcriptional buffering and 3ʹutr lengthening are shaped during human neurodevelopment by shifts in mrna stability and microrna load
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10002768/
https://www.ncbi.nlm.nih.gov/pubmed/36909614
http://dx.doi.org/10.1101/2023.03.01.530249
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