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Chromobox proteins in cancer: Multifaceted functions and strategies for modulation (Review)
Jian Wang1, Bo Yang2, Xiuhang Zhang3
1Department of Neurovascular Surgery, The First Hospital of Jilin University, Changchun, Jilin 130021, P.R. China.
Abstract:
Chromobox (CBX) proteins are important epigenetic regulatory proteins and are widely involved in biological processes, such as embryonic development, the maintenance of stem cell characteristics and the regulation of cell proliferation and apoptosis. Disorder and dysfunction of CBXs in cancer usually lead to the blockade or ectoptic activation of developmental pathways, promoting the occurrence, development and progression of cancer. In the present review, the characteristics and functions of CBXs were first introduced. Subsequently, the expression of CBXs in cancers and the relationship between CBXs and clinical characteristics (mainly cancer grade, stage, metastasis and relapse) and prognosis were discussed. Finally, it was described how CBXs regulate cell proliferation and self‑renewal, apoptosis and the acquisition of malignant phenotypes, such as invasion, migration and chemoresistance, through mechanisms involving epigenetic modification, nuclear translocation, noncoding RNA interactions, transcriptional regulation, posttranslational modifications, protein‑protein interactions, signal transduction and metabolic reprogramming. The study also focused on cancer therapies targeting CBXs. The present review provides new insight and a comprehensive basis for follow‑up research on CBXs and cancer.
Insights
Chromobox (CBX) proteins are crucial epigenetic regulators. Their dysfunction in cancer promotes tumor growth and progression, highlighting them as potential therapeutic targets.
Area of Science:
- Epigenetics and Molecular Biology
- Cancer Biology
- Developmental Biology
Background:
- Chromobox (CBX) proteins are key epigenetic regulators involved in development and stem cell maintenance.
- CBX protein dysfunction is linked to aberrant developmental pathway activation, driving cancer initiation and progression.
Approach:
- This review synthesizes current knowledge on CBX protein characteristics and functions.
- It examines CBX expression in various cancers and its correlation with clinical features and prognosis.
- Mechanisms by which CBXs influence cancer phenotypes and potential therapeutic strategies targeting CBXs are discussed.
Key Points:
- CBX proteins regulate critical cellular processes including proliferation, apoptosis, and self-renewal.
- Dysregulated CBXs contribute to malignant phenotypes like invasion, migration, and chemoresistance.
- Multiple mechanisms, including epigenetic modification and signaling pathways, mediate CBX functions in cancer.
Conclusions:
- CBX proteins play a significant role in cancer development and progression.
- Targeting CBX proteins offers a promising avenue for novel cancer therapies.
- This review provides a comprehensive foundation for future research on CBXs in oncology.
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