Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Mechanistic model for epigenetic maintenance by methyl-CpG-binding domain proteins

View through CrossRef
Abstract DNA methylation is a fundamental element of epigenetic regulation that is governed by the MBD protein superfamily, a group of “readers” that share a highly conserved methyl-CpG-binding domain (MBD) and mediate chromatin remodeler recruitment, transcription regulation, and coordination of DNA and histone modification. Previous work has characterized the binding affinity and sequence selectivity of MBD-containing proteins toward palindromes of 5-methylcytosine (5mC) containing 5mCpG dinucleotides, often referred to as single symmetrically methylated CpG sites. However, little is known about how MBD binding is influenced by the prototypical local clustering of methylated CpG sites and the presence of DNA structural motifs encountered, e.g., during DNA replication and transcription. Here, we use Single-Molecule Kinetics through Equilibrium Poisson Sampling (SiMKEPS) to measure precise binding and dissociation rate constants of the MBD of human protein MBD1 to DNAs with varying patterns of multiple methylated CpG sites and diverse structural motifs. MBD binding is promoted by two major properties of its DNA substrates: 1) tandem (consecutive) symmetrically methylated CpG sites in double-stranded DNA and secondary structures in single-stranded DNA; and 2) DNA forks. Based on our findings, we propose a mechanistic model for how MBD proteins contribute to epigenetic boundary maintenance between transcriptionally silenced and active genome regions.
Title: Mechanistic model for epigenetic maintenance by methyl-CpG-binding domain proteins
Description:
Abstract DNA methylation is a fundamental element of epigenetic regulation that is governed by the MBD protein superfamily, a group of “readers” that share a highly conserved methyl-CpG-binding domain (MBD) and mediate chromatin remodeler recruitment, transcription regulation, and coordination of DNA and histone modification.
Previous work has characterized the binding affinity and sequence selectivity of MBD-containing proteins toward palindromes of 5-methylcytosine (5mC) containing 5mCpG dinucleotides, often referred to as single symmetrically methylated CpG sites.
However, little is known about how MBD binding is influenced by the prototypical local clustering of methylated CpG sites and the presence of DNA structural motifs encountered, e.
g.
, during DNA replication and transcription.
Here, we use Single-Molecule Kinetics through Equilibrium Poisson Sampling (SiMKEPS) to measure precise binding and dissociation rate constants of the MBD of human protein MBD1 to DNAs with varying patterns of multiple methylated CpG sites and diverse structural motifs.
MBD binding is promoted by two major properties of its DNA substrates: 1) tandem (consecutive) symmetrically methylated CpG sites in double-stranded DNA and secondary structures in single-stranded DNA; and 2) DNA forks.
Based on our findings, we propose a mechanistic model for how MBD proteins contribute to epigenetic boundary maintenance between transcriptionally silenced and active genome regions.

Related Results

Limited expression of non-integrating CpG-free plasmid is associated with increased nucleosome enrichment
Limited expression of non-integrating CpG-free plasmid is associated with increased nucleosome enrichment
CpG-free pDNA was reported to facilitate sustained transgene expression with minimal inflammationin vivoas compared to CpG-containing pDNA. However, the expression potential and im...
Prediction model construction of mouse stem cell pluripotency using CpG and non-CpG DNA methylation markers
Prediction model construction of mouse stem cell pluripotency using CpG and non-CpG DNA methylation markers
AbstractBackgroundGenome-wide studies of DNA methylation across the epigenetic landscape provide insights into the heterogeneity of pluripotent embryonic stem cells (ESCs). Differe...
Influence of microbial bioinoculants on the accumulation of new phytocompounds in Oroxylum indicum (L.) Benth. ex Kurz
Influence of microbial bioinoculants on the accumulation of new phytocompounds in Oroxylum indicum (L.) Benth. ex Kurz
The seedlings of Oroxylum indicum were inoculated with plant growth promoting microbes (PGPMs) mainly, Glomus mosseae, Trichoderma harzianum and Pseudomonas putida both alone and c...
Liposome-Encapsulated CpG Oligodeoxynucleotides as a Potent Adjuvant for Inducing Type 1 Innate Immunity
Liposome-Encapsulated CpG Oligodeoxynucleotides as a Potent Adjuvant for Inducing Type 1 Innate Immunity
AbstractUnmethylated cytosine-phosphorothioate-guanine oligodeoxynucleotides (CpG-ODNs) exhibit potent immunostimulating activity by binding with Toll-like receptor 9 (TLR9) expres...
T Cell Modulation Combined with Intratumoral CpG Cures Lymphoma without the Need for Chemotherapy.
T Cell Modulation Combined with Intratumoral CpG Cures Lymphoma without the Need for Chemotherapy.
Abstract Introduction: We have previously shown that intratumoral injection of CpG oligodeoxynucleotide plus systemic chemotherapy can induce T cell immunity against...
Section-level genome sequencing and comparative genomics of Aspergillus sections Cavernicolus and Usti
Section-level genome sequencing and comparative genomics of Aspergillus sections Cavernicolus and Usti
Fig. S1. A cladogram representation of the phylogenetic relations between the species in this paper. The red labels show bootstrap values of 100 % and the black labels show bootstr...
Epigenetic age prediction drifts resulting from next-generation methylation arrays
Epigenetic age prediction drifts resulting from next-generation methylation arrays
Abstract Background Epigenetic clocks based on DNA methylation data are routinely used to obtain surrogate measures of biological age and estimate epigenetic age accelerat...

Back to Top