Cargando…

The Dictyostelium discoideum genome lacks significant DNA methylation and uncovers palindromic sequences as a source of false positives in bisulfite sequencing

DNA methylation, the addition of a methyl (CH(3)) group to a cytosine residue, is an evolutionarily conserved epigenetic mark involved in a number of different biological functions in eukaryotes, including transcriptional regulation, chromatin structural organization, cellular differentiation and de...

Descripción completa

Detalles Bibliográficos
Autores principales: Drewell, Robert A, Cormier, Tayla C, Steenwyk, Jacob L, Denis, James St, Tabima, Javier F, Dresch, Jacqueline M, Larochelle, Denis A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10111430/
https://www.ncbi.nlm.nih.gov/pubmed/37081864
http://dx.doi.org/10.1093/nargab/lqad035
_version_ 1785027450421379072
author Drewell, Robert A
Cormier, Tayla C
Steenwyk, Jacob L
Denis, James St
Tabima, Javier F
Dresch, Jacqueline M
Larochelle, Denis A
author_facet Drewell, Robert A
Cormier, Tayla C
Steenwyk, Jacob L
Denis, James St
Tabima, Javier F
Dresch, Jacqueline M
Larochelle, Denis A
author_sort Drewell, Robert A
collection PubMed
description DNA methylation, the addition of a methyl (CH(3)) group to a cytosine residue, is an evolutionarily conserved epigenetic mark involved in a number of different biological functions in eukaryotes, including transcriptional regulation, chromatin structural organization, cellular differentiation and development. In the social amoeba Dictyostelium, previous studies have shown the existence of a DNA methyltransferase (DNMA) belonging to the DNMT2 family, but the extent and function of 5-methylcytosine in the genome are unclear. Here, we present the whole genome DNA methylation profile of Dictyostelium discoideum using deep coverage replicate sequencing of bisulfite-converted gDNA extracted from post-starvation cells. We find an overall very low number of sites with any detectable level of DNA methylation, occurring at significant levels in only 303–3432 cytosines out of the ∼7.5 million total cytosines in the genome depending on the replicate. Furthermore, a knockout of the DNMA enzyme leads to no overall decrease in DNA methylation. Of the identified sites, significant methylation is only detected at 11 sites in all four of the methylomes analyzed. Targeted bisulfite PCR sequencing and computational analysis demonstrate that the methylation profile does not change during development and that these 11 cytosines are most likely false positives generated by protection from bisulfite conversion due to their location in hairpin-forming palindromic DNA sequences. Our data therefore provide evidence that there is no significant DNA methylation in Dictyostelium before fruiting body formation and identify a reproducible experimental artifact from bisulfite sequencing.
format Online
Article
Text
id pubmed-10111430
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-101114302023-04-19 The Dictyostelium discoideum genome lacks significant DNA methylation and uncovers palindromic sequences as a source of false positives in bisulfite sequencing Drewell, Robert A Cormier, Tayla C Steenwyk, Jacob L Denis, James St Tabima, Javier F Dresch, Jacqueline M Larochelle, Denis A NAR Genom Bioinform Standard Article DNA methylation, the addition of a methyl (CH(3)) group to a cytosine residue, is an evolutionarily conserved epigenetic mark involved in a number of different biological functions in eukaryotes, including transcriptional regulation, chromatin structural organization, cellular differentiation and development. In the social amoeba Dictyostelium, previous studies have shown the existence of a DNA methyltransferase (DNMA) belonging to the DNMT2 family, but the extent and function of 5-methylcytosine in the genome are unclear. Here, we present the whole genome DNA methylation profile of Dictyostelium discoideum using deep coverage replicate sequencing of bisulfite-converted gDNA extracted from post-starvation cells. We find an overall very low number of sites with any detectable level of DNA methylation, occurring at significant levels in only 303–3432 cytosines out of the ∼7.5 million total cytosines in the genome depending on the replicate. Furthermore, a knockout of the DNMA enzyme leads to no overall decrease in DNA methylation. Of the identified sites, significant methylation is only detected at 11 sites in all four of the methylomes analyzed. Targeted bisulfite PCR sequencing and computational analysis demonstrate that the methylation profile does not change during development and that these 11 cytosines are most likely false positives generated by protection from bisulfite conversion due to their location in hairpin-forming palindromic DNA sequences. Our data therefore provide evidence that there is no significant DNA methylation in Dictyostelium before fruiting body formation and identify a reproducible experimental artifact from bisulfite sequencing. Oxford University Press 2023-04-18 /pmc/articles/PMC10111430/ /pubmed/37081864 http://dx.doi.org/10.1093/nargab/lqad035 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of NAR Genomics and Bioinformatics. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Standard Article
Drewell, Robert A
Cormier, Tayla C
Steenwyk, Jacob L
Denis, James St
Tabima, Javier F
Dresch, Jacqueline M
Larochelle, Denis A
The Dictyostelium discoideum genome lacks significant DNA methylation and uncovers palindromic sequences as a source of false positives in bisulfite sequencing
title The Dictyostelium discoideum genome lacks significant DNA methylation and uncovers palindromic sequences as a source of false positives in bisulfite sequencing
title_full The Dictyostelium discoideum genome lacks significant DNA methylation and uncovers palindromic sequences as a source of false positives in bisulfite sequencing
title_fullStr The Dictyostelium discoideum genome lacks significant DNA methylation and uncovers palindromic sequences as a source of false positives in bisulfite sequencing
title_full_unstemmed The Dictyostelium discoideum genome lacks significant DNA methylation and uncovers palindromic sequences as a source of false positives in bisulfite sequencing
title_short The Dictyostelium discoideum genome lacks significant DNA methylation and uncovers palindromic sequences as a source of false positives in bisulfite sequencing
title_sort dictyostelium discoideum genome lacks significant dna methylation and uncovers palindromic sequences as a source of false positives in bisulfite sequencing
topic Standard Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10111430/
https://www.ncbi.nlm.nih.gov/pubmed/37081864
http://dx.doi.org/10.1093/nargab/lqad035
work_keys_str_mv AT drewellroberta thedictyosteliumdiscoideumgenomelackssignificantdnamethylationanduncoverspalindromicsequencesasasourceoffalsepositivesinbisulfitesequencing
AT cormiertaylac thedictyosteliumdiscoideumgenomelackssignificantdnamethylationanduncoverspalindromicsequencesasasourceoffalsepositivesinbisulfitesequencing
AT steenwykjacobl thedictyosteliumdiscoideumgenomelackssignificantdnamethylationanduncoverspalindromicsequencesasasourceoffalsepositivesinbisulfitesequencing
AT denisjamesst thedictyosteliumdiscoideumgenomelackssignificantdnamethylationanduncoverspalindromicsequencesasasourceoffalsepositivesinbisulfitesequencing
AT tabimajavierf thedictyosteliumdiscoideumgenomelackssignificantdnamethylationanduncoverspalindromicsequencesasasourceoffalsepositivesinbisulfitesequencing
AT dreschjacquelinem thedictyosteliumdiscoideumgenomelackssignificantdnamethylationanduncoverspalindromicsequencesasasourceoffalsepositivesinbisulfitesequencing
AT larochelledenisa thedictyosteliumdiscoideumgenomelackssignificantdnamethylationanduncoverspalindromicsequencesasasourceoffalsepositivesinbisulfitesequencing
AT drewellroberta dictyosteliumdiscoideumgenomelackssignificantdnamethylationanduncoverspalindromicsequencesasasourceoffalsepositivesinbisulfitesequencing
AT cormiertaylac dictyosteliumdiscoideumgenomelackssignificantdnamethylationanduncoverspalindromicsequencesasasourceoffalsepositivesinbisulfitesequencing
AT steenwykjacobl dictyosteliumdiscoideumgenomelackssignificantdnamethylationanduncoverspalindromicsequencesasasourceoffalsepositivesinbisulfitesequencing
AT denisjamesst dictyosteliumdiscoideumgenomelackssignificantdnamethylationanduncoverspalindromicsequencesasasourceoffalsepositivesinbisulfitesequencing
AT tabimajavierf dictyosteliumdiscoideumgenomelackssignificantdnamethylationanduncoverspalindromicsequencesasasourceoffalsepositivesinbisulfitesequencing
AT dreschjacquelinem dictyosteliumdiscoideumgenomelackssignificantdnamethylationanduncoverspalindromicsequencesasasourceoffalsepositivesinbisulfitesequencing
AT larochelledenisa dictyosteliumdiscoideumgenomelackssignificantdnamethylationanduncoverspalindromicsequencesasasourceoffalsepositivesinbisulfitesequencing