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Silencing of X-Linked MicroRNAs by Meiotic Sex Chromosome Inactivation

During the pachytene stage of meiosis in male mammals, the X and Y chromosomes are transcriptionally silenced by Meiotic Sex Chromosome Inactivation (MSCI). MSCI is conserved in therian mammals and is essential for normal male fertility. Transcriptomics approaches have demonstrated that in mice, mos...

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Autores principales: Royo, Hélène, Seitz, Hervé, ElInati, Elias, Peters, Antoine H. F. M., Stadler, Michael B., Turner, James M. A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4624941/
https://www.ncbi.nlm.nih.gov/pubmed/26509798
http://dx.doi.org/10.1371/journal.pgen.1005461
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author Royo, Hélène
Seitz, Hervé
ElInati, Elias
Peters, Antoine H. F. M.
Stadler, Michael B.
Turner, James M. A.
author_facet Royo, Hélène
Seitz, Hervé
ElInati, Elias
Peters, Antoine H. F. M.
Stadler, Michael B.
Turner, James M. A.
author_sort Royo, Hélène
collection PubMed
description During the pachytene stage of meiosis in male mammals, the X and Y chromosomes are transcriptionally silenced by Meiotic Sex Chromosome Inactivation (MSCI). MSCI is conserved in therian mammals and is essential for normal male fertility. Transcriptomics approaches have demonstrated that in mice, most or all protein-coding genes on the X chromosome are subject to MSCI. However, it is unclear whether X-linked non-coding RNAs behave in a similar manner. The X chromosome is enriched in microRNA (miRNA) genes, with many exhibiting testis-biased expression. Importantly, high expression levels of X-linked miRNAs (X-miRNAs) have been reported in pachytene spermatocytes, indicating that these genes may escape MSCI, and perhaps play a role in the XY-silencing process. Here we use RNA FISH to examine X-miRNA expression in the male germ line. We find that, like protein-coding X-genes, X-miRNAs are expressed prior to prophase I and are thereafter silenced during pachynema. X-miRNA silencing does not occur in mouse models with defective MSCI. Furthermore, X-miRNAs are expressed at pachynema when present as autosomally integrated transgenes. Thus, we conclude that silencing of X-miRNAs during pachynema in wild type males is MSCI-dependent. Importantly, misexpression of X-miRNAs during pachynema causes spermatogenic defects. We propose that MSCI represents a chromosomal mechanism by which X-miRNAs, and other potential X-encoded repressors, can be silenced, thereby regulating genes with critical late spermatogenic functions.
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spelling pubmed-46249412015-11-06 Silencing of X-Linked MicroRNAs by Meiotic Sex Chromosome Inactivation Royo, Hélène Seitz, Hervé ElInati, Elias Peters, Antoine H. F. M. Stadler, Michael B. Turner, James M. A. PLoS Genet Research Article During the pachytene stage of meiosis in male mammals, the X and Y chromosomes are transcriptionally silenced by Meiotic Sex Chromosome Inactivation (MSCI). MSCI is conserved in therian mammals and is essential for normal male fertility. Transcriptomics approaches have demonstrated that in mice, most or all protein-coding genes on the X chromosome are subject to MSCI. However, it is unclear whether X-linked non-coding RNAs behave in a similar manner. The X chromosome is enriched in microRNA (miRNA) genes, with many exhibiting testis-biased expression. Importantly, high expression levels of X-linked miRNAs (X-miRNAs) have been reported in pachytene spermatocytes, indicating that these genes may escape MSCI, and perhaps play a role in the XY-silencing process. Here we use RNA FISH to examine X-miRNA expression in the male germ line. We find that, like protein-coding X-genes, X-miRNAs are expressed prior to prophase I and are thereafter silenced during pachynema. X-miRNA silencing does not occur in mouse models with defective MSCI. Furthermore, X-miRNAs are expressed at pachynema when present as autosomally integrated transgenes. Thus, we conclude that silencing of X-miRNAs during pachynema in wild type males is MSCI-dependent. Importantly, misexpression of X-miRNAs during pachynema causes spermatogenic defects. We propose that MSCI represents a chromosomal mechanism by which X-miRNAs, and other potential X-encoded repressors, can be silenced, thereby regulating genes with critical late spermatogenic functions. Public Library of Science 2015-10-28 /pmc/articles/PMC4624941/ /pubmed/26509798 http://dx.doi.org/10.1371/journal.pgen.1005461 Text en © 2015 Royo 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Royo, Hélène
Seitz, Hervé
ElInati, Elias
Peters, Antoine H. F. M.
Stadler, Michael B.
Turner, James M. A.
Silencing of X-Linked MicroRNAs by Meiotic Sex Chromosome Inactivation
title Silencing of X-Linked MicroRNAs by Meiotic Sex Chromosome Inactivation
title_full Silencing of X-Linked MicroRNAs by Meiotic Sex Chromosome Inactivation
title_fullStr Silencing of X-Linked MicroRNAs by Meiotic Sex Chromosome Inactivation
title_full_unstemmed Silencing of X-Linked MicroRNAs by Meiotic Sex Chromosome Inactivation
title_short Silencing of X-Linked MicroRNAs by Meiotic Sex Chromosome Inactivation
title_sort silencing of x-linked micrornas by meiotic sex chromosome inactivation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4624941/
https://www.ncbi.nlm.nih.gov/pubmed/26509798
http://dx.doi.org/10.1371/journal.pgen.1005461
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