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Restricted and non-essential redundancy of RNAi and piRNA pathways in mouse oocytes

Germline genome defense evolves to recognize and suppress retrotransposons. One of defensive mechanisms is the PIWI-associated RNA (piRNA) pathway, which employs small RNAs for sequence-specific repression. The loss of the piRNA pathway in mice causes male sterility while females remain fertile. Unl...

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Autores principales: Taborska, Eliska, Pasulka, Josef, Malik, Radek, Horvat, Filip, Jenickova, Irena, Jelić Matošević, Zoe, Svoboda, Petr
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6944382/
https://www.ncbi.nlm.nih.gov/pubmed/31860668
http://dx.doi.org/10.1371/journal.pgen.1008261
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author Taborska, Eliska
Pasulka, Josef
Malik, Radek
Horvat, Filip
Jenickova, Irena
Jelić Matošević, Zoe
Svoboda, Petr
author_facet Taborska, Eliska
Pasulka, Josef
Malik, Radek
Horvat, Filip
Jenickova, Irena
Jelić Matošević, Zoe
Svoboda, Petr
author_sort Taborska, Eliska
collection PubMed
description Germline genome defense evolves to recognize and suppress retrotransposons. One of defensive mechanisms is the PIWI-associated RNA (piRNA) pathway, which employs small RNAs for sequence-specific repression. The loss of the piRNA pathway in mice causes male sterility while females remain fertile. Unlike spermatogenic cells, mouse oocytes posses also RNA interference (RNAi), another small RNA pathway capable of retrotransposon suppression. To examine whether RNAi compensates the loss of the piRNA pathway, we produced a new RNAi pathway mutant Dicer(SOM) and crossed it with a catalytically-dead mutant of Mili, an essential piRNA gene. Normal follicular and oocyte development in double mutants showed that RNAi does not suppress a strong ovarian piRNA knock-out phenotype. However, we observed redundant and non-redundant targeting of specific retrotransposon families illustrating stochasticity of recognition and targeting of invading retrotransposons. Intracisternal A Particle retrotransposon was mainly targeted by the piRNA pathway, MaLR and RLTR10 retrotransposons were targeted mainly by RNAi. Double mutants showed accumulations of LINE-1 retrotransposon transcripts. However, we did not find strong evidence for transcriptional activation and mobilization of retrotransposition competent LINE-1 elements suggesting that while both defense pathways are simultaneously expendable for ovarian oocyte development, yet another transcriptional silencing mechanism prevents mobilization of LINE-1 elements.
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spelling pubmed-69443822020-01-17 Restricted and non-essential redundancy of RNAi and piRNA pathways in mouse oocytes Taborska, Eliska Pasulka, Josef Malik, Radek Horvat, Filip Jenickova, Irena Jelić Matošević, Zoe Svoboda, Petr PLoS Genet Research Article Germline genome defense evolves to recognize and suppress retrotransposons. One of defensive mechanisms is the PIWI-associated RNA (piRNA) pathway, which employs small RNAs for sequence-specific repression. The loss of the piRNA pathway in mice causes male sterility while females remain fertile. Unlike spermatogenic cells, mouse oocytes posses also RNA interference (RNAi), another small RNA pathway capable of retrotransposon suppression. To examine whether RNAi compensates the loss of the piRNA pathway, we produced a new RNAi pathway mutant Dicer(SOM) and crossed it with a catalytically-dead mutant of Mili, an essential piRNA gene. Normal follicular and oocyte development in double mutants showed that RNAi does not suppress a strong ovarian piRNA knock-out phenotype. However, we observed redundant and non-redundant targeting of specific retrotransposon families illustrating stochasticity of recognition and targeting of invading retrotransposons. Intracisternal A Particle retrotransposon was mainly targeted by the piRNA pathway, MaLR and RLTR10 retrotransposons were targeted mainly by RNAi. Double mutants showed accumulations of LINE-1 retrotransposon transcripts. However, we did not find strong evidence for transcriptional activation and mobilization of retrotransposition competent LINE-1 elements suggesting that while both defense pathways are simultaneously expendable for ovarian oocyte development, yet another transcriptional silencing mechanism prevents mobilization of LINE-1 elements. Public Library of Science 2019-12-20 /pmc/articles/PMC6944382/ /pubmed/31860668 http://dx.doi.org/10.1371/journal.pgen.1008261 Text en © 2019 Taborska et al 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 use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Taborska, Eliska
Pasulka, Josef
Malik, Radek
Horvat, Filip
Jenickova, Irena
Jelić Matošević, Zoe
Svoboda, Petr
Restricted and non-essential redundancy of RNAi and piRNA pathways in mouse oocytes
title Restricted and non-essential redundancy of RNAi and piRNA pathways in mouse oocytes
title_full Restricted and non-essential redundancy of RNAi and piRNA pathways in mouse oocytes
title_fullStr Restricted and non-essential redundancy of RNAi and piRNA pathways in mouse oocytes
title_full_unstemmed Restricted and non-essential redundancy of RNAi and piRNA pathways in mouse oocytes
title_short Restricted and non-essential redundancy of RNAi and piRNA pathways in mouse oocytes
title_sort restricted and non-essential redundancy of rnai and pirna pathways in mouse oocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6944382/
https://www.ncbi.nlm.nih.gov/pubmed/31860668
http://dx.doi.org/10.1371/journal.pgen.1008261
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