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DNMT3L Is a Regulator of X Chromosome Compaction and Post-Meiotic Gene Transcription

Previous studies on the epigenetic regulator DNA methyltransferase 3-Like (DNMT3L), have demonstrated it is an essential regulator of paternal imprinting and early male meiosis. Dnmt3L is also a paternal effect gene, i.e., wild type offspring of heterozygous mutant sires display abnormal phenotypes...

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Autores principales: Zamudio, Natasha M., Scott, Hamish S., Wolski, Katja, Lo, Chi-Yi, Law, Charity, Leong, Dillon, Kinkel, Sarah A., Chong, Suyinn, Jolley, Damien, Smyth, Gordon K., de Kretser, David, Whitelaw, Emma, O'Bryan, Moira K.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3069080/
https://www.ncbi.nlm.nih.gov/pubmed/21483837
http://dx.doi.org/10.1371/journal.pone.0018276
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author Zamudio, Natasha M.
Scott, Hamish S.
Wolski, Katja
Lo, Chi-Yi
Law, Charity
Leong, Dillon
Kinkel, Sarah A.
Chong, Suyinn
Jolley, Damien
Smyth, Gordon K.
de Kretser, David
Whitelaw, Emma
O'Bryan, Moira K.
author_facet Zamudio, Natasha M.
Scott, Hamish S.
Wolski, Katja
Lo, Chi-Yi
Law, Charity
Leong, Dillon
Kinkel, Sarah A.
Chong, Suyinn
Jolley, Damien
Smyth, Gordon K.
de Kretser, David
Whitelaw, Emma
O'Bryan, Moira K.
author_sort Zamudio, Natasha M.
collection PubMed
description Previous studies on the epigenetic regulator DNA methyltransferase 3-Like (DNMT3L), have demonstrated it is an essential regulator of paternal imprinting and early male meiosis. Dnmt3L is also a paternal effect gene, i.e., wild type offspring of heterozygous mutant sires display abnormal phenotypes suggesting the inheritance of aberrant epigenetic marks on the paternal chromosomes. In order to reveal the mechanisms underlying these paternal effects, we have assessed X chromosome meiotic compaction, XY chromosome aneuploidy rates and global transcription in meiotic and haploid germ cells from male mice heterozygous for Dnmt3L. XY bodies from Dnmt3L heterozygous males were significantly longer than those from wild types, and were associated with a three-fold increase in XY bearing sperm. Loss of a Dnmt3L allele resulted in deregulated expression of a large number of both X-linked and autosomal genes within meiotic cells, but more prominently in haploid germ cells. Data demonstrate that similar to embryonic stem cells, DNMT3L is involved in an auto-regulatory loop in germ cells wherein the loss of a Dnmt3L allele resulted in increased transcription from the remaining wild type allele. In contrast, however, within round spermatids, this auto-regulatory loop incorporated the alternative non-coding alternative transcripts. Consistent with the mRNA data, we have localized DNMT3L within spermatids and sperm and shown that the loss of a Dnmt3L allele results in a decreased DNMT3L content within sperm. These data demonstrate previously unrecognised roles for DNMT3L in late meiosis and in the transcriptional regulation of meiotic and post-meiotic germ cells. These data provide a potential mechanism for some cases of human Klinefelter's and Turner's syndromes.
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spelling pubmed-30690802011-04-11 DNMT3L Is a Regulator of X Chromosome Compaction and Post-Meiotic Gene Transcription Zamudio, Natasha M. Scott, Hamish S. Wolski, Katja Lo, Chi-Yi Law, Charity Leong, Dillon Kinkel, Sarah A. Chong, Suyinn Jolley, Damien Smyth, Gordon K. de Kretser, David Whitelaw, Emma O'Bryan, Moira K. PLoS One Research Article Previous studies on the epigenetic regulator DNA methyltransferase 3-Like (DNMT3L), have demonstrated it is an essential regulator of paternal imprinting and early male meiosis. Dnmt3L is also a paternal effect gene, i.e., wild type offspring of heterozygous mutant sires display abnormal phenotypes suggesting the inheritance of aberrant epigenetic marks on the paternal chromosomes. In order to reveal the mechanisms underlying these paternal effects, we have assessed X chromosome meiotic compaction, XY chromosome aneuploidy rates and global transcription in meiotic and haploid germ cells from male mice heterozygous for Dnmt3L. XY bodies from Dnmt3L heterozygous males were significantly longer than those from wild types, and were associated with a three-fold increase in XY bearing sperm. Loss of a Dnmt3L allele resulted in deregulated expression of a large number of both X-linked and autosomal genes within meiotic cells, but more prominently in haploid germ cells. Data demonstrate that similar to embryonic stem cells, DNMT3L is involved in an auto-regulatory loop in germ cells wherein the loss of a Dnmt3L allele resulted in increased transcription from the remaining wild type allele. In contrast, however, within round spermatids, this auto-regulatory loop incorporated the alternative non-coding alternative transcripts. Consistent with the mRNA data, we have localized DNMT3L within spermatids and sperm and shown that the loss of a Dnmt3L allele results in a decreased DNMT3L content within sperm. These data demonstrate previously unrecognised roles for DNMT3L in late meiosis and in the transcriptional regulation of meiotic and post-meiotic germ cells. These data provide a potential mechanism for some cases of human Klinefelter's and Turner's syndromes. Public Library of Science 2011-03-31 /pmc/articles/PMC3069080/ /pubmed/21483837 http://dx.doi.org/10.1371/journal.pone.0018276 Text en Zamudio 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
Zamudio, Natasha M.
Scott, Hamish S.
Wolski, Katja
Lo, Chi-Yi
Law, Charity
Leong, Dillon
Kinkel, Sarah A.
Chong, Suyinn
Jolley, Damien
Smyth, Gordon K.
de Kretser, David
Whitelaw, Emma
O'Bryan, Moira K.
DNMT3L Is a Regulator of X Chromosome Compaction and Post-Meiotic Gene Transcription
title DNMT3L Is a Regulator of X Chromosome Compaction and Post-Meiotic Gene Transcription
title_full DNMT3L Is a Regulator of X Chromosome Compaction and Post-Meiotic Gene Transcription
title_fullStr DNMT3L Is a Regulator of X Chromosome Compaction and Post-Meiotic Gene Transcription
title_full_unstemmed DNMT3L Is a Regulator of X Chromosome Compaction and Post-Meiotic Gene Transcription
title_short DNMT3L Is a Regulator of X Chromosome Compaction and Post-Meiotic Gene Transcription
title_sort dnmt3l is a regulator of x chromosome compaction and post-meiotic gene transcription
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3069080/
https://www.ncbi.nlm.nih.gov/pubmed/21483837
http://dx.doi.org/10.1371/journal.pone.0018276
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