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An ancient germ cell-specific RNA-binding protein protects the germline from cryptic splice site poisoning

Male germ cells of all placental mammals express an ancient nuclear RNA binding protein of unknown function called RBMXL2. Here we find that deletion of the retrogene encoding RBMXL2 blocks spermatogenesis. Transcriptome analyses of age-matched deletion mice show that RBMXL2 controls splicing patter...

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Autores principales: Ehrmann, Ingrid, Crichton, James H, Gazzara, Matthew R, James, Katherine, Liu, Yilei, Grellscheid, Sushma Nagaraja, Curk, Tomaž, de Rooij, Dirk, Steyn, Jannetta S, Cockell, Simon, Adams, Ian R, Barash, Yoseph, Elliott, David J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6345566/
https://www.ncbi.nlm.nih.gov/pubmed/30674417
http://dx.doi.org/10.7554/eLife.39304
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author Ehrmann, Ingrid
Crichton, James H
Gazzara, Matthew R
James, Katherine
Liu, Yilei
Grellscheid, Sushma Nagaraja
Curk, Tomaž
de Rooij, Dirk
Steyn, Jannetta S
Cockell, Simon
Adams, Ian R
Barash, Yoseph
Elliott, David J
author_facet Ehrmann, Ingrid
Crichton, James H
Gazzara, Matthew R
James, Katherine
Liu, Yilei
Grellscheid, Sushma Nagaraja
Curk, Tomaž
de Rooij, Dirk
Steyn, Jannetta S
Cockell, Simon
Adams, Ian R
Barash, Yoseph
Elliott, David J
author_sort Ehrmann, Ingrid
collection PubMed
description Male germ cells of all placental mammals express an ancient nuclear RNA binding protein of unknown function called RBMXL2. Here we find that deletion of the retrogene encoding RBMXL2 blocks spermatogenesis. Transcriptome analyses of age-matched deletion mice show that RBMXL2 controls splicing patterns during meiosis. In particular, RBMXL2 represses the selection of aberrant splice sites and the insertion of cryptic and premature terminal exons. Our data suggest a Rbmxl2 retrogene has been conserved across mammals as part of a splicing control mechanism that is fundamentally important to germ cell biology. We propose that this mechanism is essential to meiosis because it buffers the high ambient concentrations of splicing activators, thereby preventing poisoning of key transcripts and disruption to gene expression by aberrant splice site selection.
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spelling pubmed-63455662019-01-28 An ancient germ cell-specific RNA-binding protein protects the germline from cryptic splice site poisoning Ehrmann, Ingrid Crichton, James H Gazzara, Matthew R James, Katherine Liu, Yilei Grellscheid, Sushma Nagaraja Curk, Tomaž de Rooij, Dirk Steyn, Jannetta S Cockell, Simon Adams, Ian R Barash, Yoseph Elliott, David J eLife Chromosomes and Gene Expression Male germ cells of all placental mammals express an ancient nuclear RNA binding protein of unknown function called RBMXL2. Here we find that deletion of the retrogene encoding RBMXL2 blocks spermatogenesis. Transcriptome analyses of age-matched deletion mice show that RBMXL2 controls splicing patterns during meiosis. In particular, RBMXL2 represses the selection of aberrant splice sites and the insertion of cryptic and premature terminal exons. Our data suggest a Rbmxl2 retrogene has been conserved across mammals as part of a splicing control mechanism that is fundamentally important to germ cell biology. We propose that this mechanism is essential to meiosis because it buffers the high ambient concentrations of splicing activators, thereby preventing poisoning of key transcripts and disruption to gene expression by aberrant splice site selection. eLife Sciences Publications, Ltd 2019-01-24 /pmc/articles/PMC6345566/ /pubmed/30674417 http://dx.doi.org/10.7554/eLife.39304 Text en © 2019, Ehrmann et al http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Chromosomes and Gene Expression
Ehrmann, Ingrid
Crichton, James H
Gazzara, Matthew R
James, Katherine
Liu, Yilei
Grellscheid, Sushma Nagaraja
Curk, Tomaž
de Rooij, Dirk
Steyn, Jannetta S
Cockell, Simon
Adams, Ian R
Barash, Yoseph
Elliott, David J
An ancient germ cell-specific RNA-binding protein protects the germline from cryptic splice site poisoning
title An ancient germ cell-specific RNA-binding protein protects the germline from cryptic splice site poisoning
title_full An ancient germ cell-specific RNA-binding protein protects the germline from cryptic splice site poisoning
title_fullStr An ancient germ cell-specific RNA-binding protein protects the germline from cryptic splice site poisoning
title_full_unstemmed An ancient germ cell-specific RNA-binding protein protects the germline from cryptic splice site poisoning
title_short An ancient germ cell-specific RNA-binding protein protects the germline from cryptic splice site poisoning
title_sort ancient germ cell-specific rna-binding protein protects the germline from cryptic splice site poisoning
topic Chromosomes and Gene Expression
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6345566/
https://www.ncbi.nlm.nih.gov/pubmed/30674417
http://dx.doi.org/10.7554/eLife.39304
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