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Disease modeling of core pre-mRNA splicing factor haploinsufficiency

The craniofacial disorder mandibulofacial dysostosis Guion-Almeida type is caused by haploinsufficiency of the U5 snRNP gene EFTUD2/SNU114. However, it is unclear how reduced expression of this core pre-mRNA splicing factor leads to craniofacial defects. Here we use a CRISPR-Cas9 nickase strategy to...

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Autores principales: Wood, Katherine A, Rowlands, Charlie F, Qureshi, Wasay Mohiuddin Shaikh, Thomas, Huw B, Buczek, Weronika A, Briggs, Tracy A, Hubbard, Simon J, Hentges, Kathryn E, Newman, William G, O’Keefe, Raymond T
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6935387/
https://www.ncbi.nlm.nih.gov/pubmed/31304552
http://dx.doi.org/10.1093/hmg/ddz169
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author Wood, Katherine A
Rowlands, Charlie F
Qureshi, Wasay Mohiuddin Shaikh
Thomas, Huw B
Buczek, Weronika A
Briggs, Tracy A
Hubbard, Simon J
Hentges, Kathryn E
Newman, William G
O’Keefe, Raymond T
author_facet Wood, Katherine A
Rowlands, Charlie F
Qureshi, Wasay Mohiuddin Shaikh
Thomas, Huw B
Buczek, Weronika A
Briggs, Tracy A
Hubbard, Simon J
Hentges, Kathryn E
Newman, William G
O’Keefe, Raymond T
author_sort Wood, Katherine A
collection PubMed
description The craniofacial disorder mandibulofacial dysostosis Guion-Almeida type is caused by haploinsufficiency of the U5 snRNP gene EFTUD2/SNU114. However, it is unclear how reduced expression of this core pre-mRNA splicing factor leads to craniofacial defects. Here we use a CRISPR-Cas9 nickase strategy to generate a human EFTUD2-knockdown cell line and show that reduced expression of EFTUD2 leads to diminished proliferative ability of these cells, increased sensitivity to endoplasmic reticulum (ER) stress and the mis-expression of several genes involved in the ER stress response. RNA-Seq analysis of the EFTUD2-knockdown cell line revealed transcriptome-wide changes in gene expression, with an enrichment for genes associated with processes involved in craniofacial development. Additionally, our RNA-Seq data identified widespread mis-splicing in EFTUD2-knockdown cells. Analysis of the functional and physical characteristics of mis-spliced pre-mRNAs highlighted conserved properties, including length and splice site strengths, of retained introns and skipped exons in our disease model. We also identified enriched processes associated with the affected genes, including cell death, cell and organ morphology and embryonic development. Together, these data support a model in which EFTUD2 haploinsufficiency leads to the mis-splicing of a distinct subset of pre-mRNAs with a widespread effect on gene expression, including altering the expression of ER stress response genes and genes involved in the development of the craniofacial region. The increased burden of unfolded proteins in the ER resulting from mis-splicing would exceed the capacity of the defective ER stress response, inducing apoptosis in cranial neural crest cells that would result in craniofacial abnormalities during development.
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spelling pubmed-69353872019-12-31 Disease modeling of core pre-mRNA splicing factor haploinsufficiency Wood, Katherine A Rowlands, Charlie F Qureshi, Wasay Mohiuddin Shaikh Thomas, Huw B Buczek, Weronika A Briggs, Tracy A Hubbard, Simon J Hentges, Kathryn E Newman, William G O’Keefe, Raymond T Hum Mol Genet Article The craniofacial disorder mandibulofacial dysostosis Guion-Almeida type is caused by haploinsufficiency of the U5 snRNP gene EFTUD2/SNU114. However, it is unclear how reduced expression of this core pre-mRNA splicing factor leads to craniofacial defects. Here we use a CRISPR-Cas9 nickase strategy to generate a human EFTUD2-knockdown cell line and show that reduced expression of EFTUD2 leads to diminished proliferative ability of these cells, increased sensitivity to endoplasmic reticulum (ER) stress and the mis-expression of several genes involved in the ER stress response. RNA-Seq analysis of the EFTUD2-knockdown cell line revealed transcriptome-wide changes in gene expression, with an enrichment for genes associated with processes involved in craniofacial development. Additionally, our RNA-Seq data identified widespread mis-splicing in EFTUD2-knockdown cells. Analysis of the functional and physical characteristics of mis-spliced pre-mRNAs highlighted conserved properties, including length and splice site strengths, of retained introns and skipped exons in our disease model. We also identified enriched processes associated with the affected genes, including cell death, cell and organ morphology and embryonic development. Together, these data support a model in which EFTUD2 haploinsufficiency leads to the mis-splicing of a distinct subset of pre-mRNAs with a widespread effect on gene expression, including altering the expression of ER stress response genes and genes involved in the development of the craniofacial region. The increased burden of unfolded proteins in the ER resulting from mis-splicing would exceed the capacity of the defective ER stress response, inducing apoptosis in cranial neural crest cells that would result in craniofacial abnormalities during development. Oxford University Press 2019-11-15 2019-07-13 /pmc/articles/PMC6935387/ /pubmed/31304552 http://dx.doi.org/10.1093/hmg/ddz169 Text en © The Author(s) 2019. Published by Oxford University Press. 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 Article
Wood, Katherine A
Rowlands, Charlie F
Qureshi, Wasay Mohiuddin Shaikh
Thomas, Huw B
Buczek, Weronika A
Briggs, Tracy A
Hubbard, Simon J
Hentges, Kathryn E
Newman, William G
O’Keefe, Raymond T
Disease modeling of core pre-mRNA splicing factor haploinsufficiency
title Disease modeling of core pre-mRNA splicing factor haploinsufficiency
title_full Disease modeling of core pre-mRNA splicing factor haploinsufficiency
title_fullStr Disease modeling of core pre-mRNA splicing factor haploinsufficiency
title_full_unstemmed Disease modeling of core pre-mRNA splicing factor haploinsufficiency
title_short Disease modeling of core pre-mRNA splicing factor haploinsufficiency
title_sort disease modeling of core pre-mrna splicing factor haploinsufficiency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6935387/
https://www.ncbi.nlm.nih.gov/pubmed/31304552
http://dx.doi.org/10.1093/hmg/ddz169
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