| Literature DB >> 30379964 |
Aditi Singh1,2, Adrienne Vancura1, Rafal K Woycicki1, Daniel J Hogan3, Alan G Hendrick4, Mariusz Nowacki1.
Abstract
5-methylcytosine DNA methylation regulates gene expression and developmental programming in a broad range of eukaryotes. However, its presence and potential roles in ciliates, complex single-celled eukaryotes with germline-somatic genome specialization via nuclear dimorphism, are largely uncharted. While canonical cytosine methyltransferases have not been discovered in published ciliate genomes, recent studies performed in the stichotrichous ciliate Oxytricha trifallax suggest de novo cytosine methylation during macronuclear development. In this study, we applied bisulfite genome sequencing, DNA mass spectrometry and antibody-based fluorescence detection to investigate the presence of DNA methylation in Paramecium tetraurelia. While the antibody-based methods suggest cytosine methylation, DNA mass spectrometry and bisulfite sequencing reveal that levels are actually below the limit of detection. Our results suggest that Paramecium does not utilize 5-methylcytosine DNA methylation as an integral part of its epigenetic arsenal.Entities:
Mesh:
Substances:
Year: 2018 PMID: 30379964 PMCID: PMC6209305 DOI: 10.1371/journal.pone.0206667
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1Detection of 5-methylcytosine by the antibody-based method.
(a) Colorimetric assay for total 5-methylCytosine; total gDNA of different developmental stages was extracted and the assay was carried in biological triplicates, error bar represents the standard deviation, (b) Immunocytochemistry with antibody against 5-methylcytosine during vegetative growth; veg represents wild type vegetative cells, vegetative Division represents a cell going through cytokinesis during vegetative division, Vegetative starved is the stage where wild type cells were allowed to make four divisions and then was starved for 24hrs to block further vegetative divisions, (c) Schematic representation of autogamy in Paramecium; red represents micronuclei and the developing new macronucleus, blue represents macronucleus, (d) Immunocytochemistry with antibody against 5-methylcytosine during vegetative growth; Meiosis represents beginning of micronuclear meiosis, Skein represents beginning of the fragmentation of parental macronucleus, Fragmentation represents a population where about 40% of cells have fragmented parental macronucleus, Dev1 is the stage during autogamy when most of the cells have visible new macronucleus, Dev 2 is the stage during autogamy when majority of cells have fully developed new macronucleus ready for karyonidal division, dev 3 is after post karyonidal divison. Orange arrows represent micronucleus, dotted circles show new macronucleus. Scale bar: 5μm.
Fig 25-methylcytosine detection using mass spectrometry and bisulfite sequencing.
(a) DNA mass spectrometry analysis showing the percentage of cytosine methylation, vegetative unstarved; wild type cells were allowed to undergo vegetative divisions, starved vegetative; wild type vegetative cells grown four divisions and then starved for 24hours before extracting gDNA, 40% fragmented; a population where about 40% of cells have fragmented parental macronucleus during autogamy, post-autogamous; cells after seven days post autogamy. (b) Bisulfite sequencing analysis on different developmental stages; veg represents wild type vegetative cells, Veg starved is the stage where wild type cells were allowed to make four divisions and then was starved for 24hrs to block further vegetative divisions mac dev represents 40% fragmented, (c) Lambda DNA was spiked in sequencing samples as a negative control. (d) raw data from a published human bisulfite dataset was downloaded and ran through the workflow. (e) snapshot of mapping of putative loci for methylated cytosine (marked with orange bar) with the reference genome. Genomic DNA was treated with Epitect Fast DNA Bisulfite Kit (Qiagen) for Bisulfite conversion, PCR product was then sent for Sanger sequencing and mapped with Geneious software version R8.