Epigenomic Profiling

Epigenomic profiling is the systematic analysis of chemical modifications and structural features that regulate gene activity without changing the DNA sequence, providing insight into how cells adopt distinct states. In cancer research, it measures patterns such as DNA methylation, histone modifications, chromatin accessibility, and regulatory interactions using sequencing-based and related molecular assays. These profiles can reveal altered gene regulation, identify tumor-specific signatures, and clarify how cancer cells develop, adapt, and resist treatment. Comparing epigenomic states across tumors, normal tissues, or treatment conditions supports biomarker discovery, disease classification, and the development of therapies that target abnormal gene-control mechanisms.

Epigenomic Profiling - Related Videos

Research

JoVE Journal - Biology

TChIP-Seq: Cell-Type-Specific Epigenome Profiling

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Cited by 1 •

2019

We describe a step-by-step protocol for tandem chromatin immunoprecipitation sequencing (tChIP-Seq) that enables the analysis of cell-type-specific genome-wide histone modification.

Research

JoVE Journal - Genetics
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Spatially Resolved, Integrated Single-Cell Multiomic Profiling of the Transcriptome and Epigenomic Targets in Frozen Tissue Sections

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2026

This study presents a spatial Trekker–CUT&Tag multiome protocol combining direct spatial barcoding of a tissue section with single-cell multiome analysis. This approach enables spatially resolved single-cell profiling of gene expression and the histone H3K27ac modification simultaneously, offering mechanistic insights into gene regulation in the context of tissue microanatomy.

Nuclei Isolation from Mouse Cardiac Progenitor Cells for Epigenome and Gene Expression Profiling at Single-Cell Resolution

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Cited by 5 •

2023

Here, we present a protocol describing cell nuclei preparation. After microdissection and enzymatic dissociation of cardiac tissue into single cells, the progenitor cells were frozen, followed by isolation of pure viable cells, which were used for single-nucleus RNA sequencing and the single-nucleus assay for transposase-accessible chromatin with high-throughput sequencing analyses.

Pattern-based Search of Epigenomic Data Using GeNemo

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2017

Unlike DNA sequence data, epigenomic data are not readily subjected to text-based searches. Presented here are the procedures to use an upgraded version of GeNemo, a web-based bioinformatics tool, to conduct pattern-based searches for similarities in epigenomic data comparing available online databases including Encyclopedia of DNA Elements with user's data.

Education

JoVE Science Education - Advanced Biology

Expression Profiling with Microarrays

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2023

Microarrays are important tools for profiling gene expression, and are based on complementary binding between probes that are attached to glass chips and nucleic acids derived from samples. Using these arrays, scientists can simultaneously evaluate the expression of thousands of genes. In addition, the expression profiles of different cells or tissue types can be compared, allowing researchers to deduce how the expression of different genes change during biological processes, and thus gain...

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