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Region-specific DNA hydroxymethylation along the malignant progression of IDH-mutant gliomas
Taijun Hana1,2, Akitake Mukasa3, Masashi Nomura1
1Department of Neurosurgery, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.
Abstract:
The majority of low-grade isocitrate dehydrogenase-mutant (IDHmt) gliomas undergo malignant progression (MP), but their underlying mechanism remains unclear. IDHmt gliomas exhibit global DNA methylation, and our previous report suggested that MP could be partly attributed to passive demethylation caused by accelerated cell cycles. However, during MP, there is also active demethylation mediated by ten-eleven translocation, such as DNA hydroxymethylation. Hydroxymethylation is reported to potentially contribute to gene expression regulation, but its role in MP remains under investigation. Therefore, we conducted a comprehensive analysis of hydroxymethylation during MP of IDHmt astrocytoma. Five primary/malignantly progressed IDHmt astrocytoma pairs were analyzed with oxidative bisulfite and the Infinium EPIC methylation array, detecting 5-hydroxymethyl cytosine at over 850,000 locations for region-specific hydroxymethylation assessment. Notably, we observed significant sharing of hydroxymethylated genomic regions during MP across the samples. Hydroxymethylated CpGs were enriched in open sea and intergenic regions (p < 0.001), and genes undergoing hydroxymethylation were significantly associated with cancer-related signaling pathways. RNA sequencing data integration identified 91 genes with significant positive/negative hydroxymethylation-expression correlations. Functional analysis suggested that positively correlated genes are involved in cell-cycle promotion, while negatively correlated ones are associated with antineoplastic functions. Analyses of The Cancer Genome Atlas clinical data on glioma were in line with these findings. Motif-enrichment analysis suggested the potential involvement of the transcription factor KLF4 in hydroxymethylation-based gene regulation. Our findings shed light on the significance of region-specific DNA hydroxymethylation in glioma MP and suggest its potential role in cancer-related gene expression and IDHmt glioma malignancy.
Insights
DNA hydroxymethylation plays a key role in the malignant progression of isocitrate dehydrogenase-mutant (IDHmt) gliomas. This epigenetic modification influences cancer-related gene expression and cell cycle regulation, offering new insights into glioma malignancy.
Area of Science:
- Epigenetics
- Neuro-oncology
- Genomics
Background:
- Low-grade isocitrate dehydrogenase-mutant (IDHmt) gliomas frequently progress to malignant tumors.
- Mechanisms of malignant progression, including DNA methylation and hydroxymethylation, are not fully understood.
- Active demethylation via ten-eleven translocation, including DNA hydroxymethylation, may contribute to malignant progression.
Purpose of the Study:
- To comprehensively analyze region-specific DNA hydroxymethylation patterns during the malignant progression of IDHmt astrocytoma.
- To investigate the relationship between DNA hydroxymethylation and gene expression in IDHmt glioma malignancy.
- To identify potential regulatory factors and pathways involved in hydroxymethylation-driven glioma progression.
Main Methods:
- Analysis of five primary/malignantly progressed IDHmt astrocytoma pairs.
- Utilized oxidative bisulfite sequencing and the Infinium EPIC methylation array to assess 5-hydroxymethyl cytosine at over 850,000 genomic locations.
- Integrated RNA sequencing data and analyzed The Cancer Genome Atlas (TCGA) clinical data for correlation and validation.
Main Results:
- Observed significant, shared patterns of genomic hydroxymethylation across samples during malignant progression.
- Hydroxymethylated CpGs were enriched in open sea and intergenic regions, associated with cancer-related signaling pathways.
- Identified 91 genes with significant hydroxymethylation-expression correlations, including cell-cycle promoters and genes with antineoplastic functions. KLF4 was suggested as a potential regulator.
Conclusions:
- Region-specific DNA hydroxymethylation is significantly involved in the malignant progression of IDHmt astrocytoma.
- Hydroxymethylation influences the expression of genes critical for cell-cycle promotion and antineoplastic functions.
- Findings highlight the role of DNA hydroxymethylation in IDHmt glioma malignancy and suggest KLF4 as a potential regulatory factor.
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