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Updated: Jan 9, 2026

Studying Pancreatic Cancer Stem Cell Characteristics for Developing New Treatment Strategies
Published on: June 20, 2015
Bromodomain-Driven Regulation of Stem Cells: A Potential Target for Cancer Therapeutic Intervention
Muthuvel Jothi1,2, Anil Kumar Devakrishnan3, Krishna Kumar Haridhasapavalan4
1Graduate School of Agricultural Science, Osaka Metropolitan University, Osaka, 5998531, Japan.
Abstract:
All cells within an organism share identical genetic material, yet epigenetic mechanisms determine stem cell fate by precisely regulating transcriptional programs. Histone acetylation is a key epigenetic modification that establishes an open chromatin structure, which is recognized by proteins involved in modulating chromatin dynamics essential for stem cell functions. Bromodomain (BrD)-containing proteins specifically recognize acetylated lysines on histones and act as critical epigenetic regulators within larger protein complexes. This review comprehensively describes the BrD protein family, highlighting their structural classifications and diverse functions, and explores their critical roles in regulating stem cell pluripotency and differentiation, and their implications in cancer development. Dysregulated BrD proteins can drive cancer by increasing stem cell-like features and tumor heterogeneity, making them a potential target for cancer treatment. Furthermore, this review emphasizes BrD inhibitors as promising therapeutic targets capable of targeting cancer stem cells and potentially mitigating cancer progression. Understanding the detailed functions and regulatory pathways of BrD proteins may open new avenues for improved cancer stem cell-targeted therapies.
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