Related Experiment Videos
Methylation of DNA repeats of decreasing sizes in Ascobolus immersus
1Institut de Génétique et Microbiologie, Unité de Recherche Associée 1354, Centre National de la Recherche Scientifique, Université Paris-Sud, Orsay, France.
Abstract:
In Ascobolus immersus, DNA duplications are subject to the process of methylation induced premeiotically (MIP), which methylates the cytosine residues within the repeats and results in reversible gene silencing. The triggering of MIP requires pairing of the repeats, and its detection requires maintenance of the resulting methylation. MIP of kilobase-size duplications occurs frequently and leads to the methylation of all C residues in the repeats, including those belonging to non-CpG sequences. Using duplications of decreasing sizes, we observed that tandem repeats never escaped MIP when larger than 630 bp and showed a sudden and drastic drop in MIP frequencies when their sizes decreased from 630 to 317 bp. This contrasted with the progressive decrease of MIP frequencies observed with ectopic repeats, in which apparently the search for homology influences the MIP triggering efficiency. The minimal size actually required for a repeat to undergo detectable MIP was found to be close to 300 bp. Genomic sequencing and Southern hybridization analyses using restriction enzymes sensitive to C methylation showed a loss of methylation at non-CpG sites in short DNA segments, methylation being restricted to a limited number of CpG dinucleotides. Our data suggest the existence of two distinct mechanisms underlying methylation maintenance, one responsible for methylation at CpG sites and the other responsible for methylation at non-CpG sites.
Insights
DNA duplications in Ascobolus immersus undergo methylation induced premeiotically (MIP), leading to gene silencing. Repeat size significantly impacts MIP efficiency, with distinct mechanisms for CpG and non-CpG methylation maintenance.
Area of Science:
- Epigenetics
- Molecular Biology
- Genetics
Background:
- DNA methylation is a key epigenetic mechanism regulating gene expression.
- Methylation Induced Pre-meiotically (MIP) in Ascobolus immersus silences DNA duplications.
- MIP involves cytosine methylation within DNA repeats, requiring repeat pairing and methylation maintenance.
Purpose of the Study:
- To investigate the influence of DNA repeat size on MIP frequency and efficiency.
- To elucidate the mechanisms of methylation maintenance at CpG and non-CpG sites.
Main Methods:
- Analysis of DNA duplications of varying sizes in Ascobolus immersus.
- Genomic sequencing and Southern hybridization using methylation-sensitive restriction enzymes.
Main Results:
- Tandem repeats >630 bp are consistently affected by MIP.
- MIP frequency drops significantly between 630 and 317 bp for tandem repeats.
- Ectopic repeats show a progressive decrease in MIP frequency with size reduction.
- Minimal detectable MIP occurs in repeats around 300 bp.
- Short DNA segments show loss of non-CpG methylation, with methylation restricted to CpG sites.
Conclusions:
- Repeat size is a critical determinant of MIP efficiency.
- Distinct mechanisms govern methylation maintenance at CpG and non-CpG sites.
- Homology search influences MIP triggering in ectopic repeats.