Splicing accuracy varies across human introns, tissues, age and disease

Alternative splicing impacts most multi-exonic human genes. Inaccuracies during this process may have an important role in ageing and disease. Here, we investigated splicing accuracy using RNA-sequencing data from >14K control samples and 40 human body sites, focusing on split reads partially map...

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Hauptverfasser: García-Ruiz, S, Zhang, D, Gustavsson, E K, Rocamora-Perez, G, Grant-Peters, M, Fairbrother-Browne, A, Reynolds, R H, Brenton, J W, Gil-Martínez, A L, Chen, Z, Botia, JA, Guelfi, S, Collado-Torres, L, Ryten, M
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creator García-Ruiz, S
Zhang, D
Gustavsson, E K
Rocamora-Perez, G
Grant-Peters, M
Fairbrother-Browne, A
Reynolds, R H
Brenton, J W
Gil-Martínez, A L
Chen, Z
Botia, JA
Guelfi, S
Collado-Torres, L
Ryten, M
description Alternative splicing impacts most multi-exonic human genes. Inaccuracies during this process may have an important role in ageing and disease. Here, we investigated splicing accuracy using RNA-sequencing data from >14K control samples and 40 human body sites, focusing on split reads partially mapping to known transcripts in annotation. We show that splicing inaccuracies occur at different rates across introns and tissues and are primarily affected by the abundance of core components of the spliceosome assembly and its regulators. Using publicly available data from RNA-knockdowns and CLIP-seq binding sites of numerous spliceosomal components and related regulators, we demonstrated the importance of RNA-binding proteins in splicing accuracy. We found that age is positively correlated with a global decline in splicing fidelity, mostly affecting genes implicated in neurodegenerative diseases. We found further support for the latter by observing a genome-wide increase in splicing inaccuracies in samples affected with Alzheimer's disease as compared to neurologically normal individuals. This in-depth characterisation of splicing has important implications for our understanding of the role of inaccuracies in ageing and human disease, particularly in neurodegenerative disorders.
doi_str_mv 10.5281/zenodo.7732871
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Inaccuracies during this process may have an important role in ageing and disease. Here, we investigated splicing accuracy using RNA-sequencing data from &gt;14K control samples and 40 human body sites, focusing on split reads partially mapping to known transcripts in annotation. We show that splicing inaccuracies occur at different rates across introns and tissues and are primarily affected by the abundance of core components of the spliceosome assembly and its regulators. Using publicly available data from RNA-knockdowns and CLIP-seq binding sites of numerous spliceosomal components and related regulators, we demonstrated the importance of RNA-binding proteins in splicing accuracy. We found that age is positively correlated with a global decline in splicing fidelity, mostly affecting genes implicated in neurodegenerative diseases. We found further support for the latter by observing a genome-wide increase in splicing inaccuracies in samples affected with Alzheimer's disease as compared to neurologically normal individuals. 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We found further support for the latter by observing a genome-wide increase in splicing inaccuracies in samples affected with Alzheimer's disease as compared to neurologically normal individuals. 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identifier DOI: 10.5281/zenodo.7732871
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language eng
recordid cdi_datacite_primary_10_5281_zenodo_7732871
source DataCite
subjects ageing
gtexv8
recount3
rna-binding-proteins
rna-seq-analysis
rna-splicing
splice-junctions
title Splicing accuracy varies across human introns, tissues, age and disease
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