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Updated: Jun 28, 2025

An Integrated Platform for Genome-wide Mapping of Chromatin States Using High-throughput ChIP-sequencing in Tumor Tissues
Published on: April 5, 2018
Proteasome Inhibition Reprograms Chromatin Landscape in Breast Cancer
H Karimi Kinyamu1,2,3, Brian D Bennett3,4,5, James M Ward3,4,5
1Chromatin and Gene Expression Section, National Institute of Environmental Health Sciences, Durham, North Carolina.
Abstract:
The 26S proteasome is the major protein degradation machinery in cells. Cancer cells use the proteasome to modulate gene expression networks that promote tumor growth. Proteasome inhibitors have emerged as effective cancer therapeutics, but how they work mechanistically remains unclear. Here, using integrative genomic analysis, we discovered unexpected reprogramming of the chromatin landscape and RNA polymerase II (RNAPII) transcription initiation in breast cancer cells treated with the proteasome inhibitor MG132. The cells acquired dynamic changes in chromatin accessibility at specific genomic loci termed differentially open chromatin regions (DOCR). DOCRs with decreased accessibility were promoter proximal and exhibited unique chromatin architecture associated with divergent RNAPII transcription. Conversely, DOCRs with increased accessibility were primarily distal to transcription start sites and enriched in oncogenic superenhancers predominantly accessible in non-basal breast tumor subtypes. These findings describe the mechanisms by which the proteasome modulates the expression of gene networks intrinsic to breast cancer biology.
Significance:
Our study provides a strong basis for understanding the mechanisms by which proteasome inhibitors exert anticancer effects. We find open chromatin regions that change during proteasome inhibition, are typically accessible in non-basal breast cancers.
Insights
Proteasome inhibitors alter cancer cell chromatin accessibility, affecting gene networks. This reveals mechanisms of proteasome inhibitor action, particularly in non-basal breast cancers.
Area of Science:
- Cancer Biology
- Molecular Biology
- Genomics
Background:
- The 26S proteasome is crucial for protein degradation in cells.
- Cancer cells exploit proteasome function to regulate gene expression and promote tumor growth.
- Proteasome inhibitors are cancer therapeutics, but their precise mechanisms are not fully understood.
Purpose of the Study:
- To investigate the mechanistic effects of proteasome inhibitors on chromatin landscape and transcription in breast cancer.
- To identify specific genomic regions and transcriptional changes induced by proteasome inhibition.
Main Methods:
- Integrative genomic analysis of breast cancer cells treated with the proteasome inhibitor MG132.
- Analysis of chromatin accessibility and RNA polymerase II (RNAPII) transcription initiation.
Main Results:
- Discovered dynamic changes in chromatin accessibility, termed differentially open chromatin regions (DOCRs).
- Identified promoter-proximal DOCRs with decreased accessibility linked to divergent RNAPII transcription.
- Found distal DOCRs with increased accessibility enriched in oncogenic superenhancers, prevalent in non-basal breast cancer subtypes.
Conclusions:
- Proteasome inhibition causes significant reprogramming of the chromatin landscape and RNAPII transcription initiation in breast cancer cells.
- The study elucidates mechanisms by which proteasome inhibitors modulate gene networks critical for breast cancer biology.
- Findings highlight the role of altered chromatin accessibility in proteasome inhibitor efficacy, especially in non-basal breast cancers.
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