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Reassessing the Potential of Myb-targeted Anti-cancer Therapy
Xiaofeng Liu1, Yunxiao Xu1, Liping Han2
1Department of Hematology, the Second Xiangya Hospital, Central South University, Changsha, Hunan Province, P.R. China.
Abstract:
Transcription factor MYB is essential for the tumorigenesis of multiple cancers, especially leukemia, breast cancer, colon cancer, adenoid cystic carcinoma and brain cancer. Thus, MYB has been regarded as an attractive target for tumor therapy. However, pioneer studies of antisense oligodeoxynucleotides against MYB, which were launched three decades ago in leukemia therapy, were discontinued because of their unsatisfactory clinical outcomes. In recent years, the roles of MYB in tumor transformation have become increasingly clear. Moreover, the regulatory mechanisms of MYB, such as the vital effects of MYB co-regulators on MYB activity and of transcriptional elongation on MYB expression, have been unveiled. These observations have underpinned novel approaches in inhibiting MYB. This review discusses the structure, function and regulation of MYB, focusing on recent insights into MYB-associated oncogenesis and how MYB-targeted therapeutics can be explored. Additionally, the main MYB-targeted therapies, including novel genetic therapy, RNA interference, microRNAs and low-molecular-weight compounds, which are especially promising inhibitors that target MYB co-regulators and transcriptional elongation, are described, and their prospects are assessed.
Insights
The MYB transcription factor drives multiple cancers, but early therapies failed. Recent discoveries in MYB regulation offer new therapeutic strategies for MYB-targeted cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Transcription factor MYB is crucial for tumorigenesis in various cancers like leukemia, breast, and colon cancer.
- Early therapeutic attempts targeting MYB using antisense oligodeoxynucleotides showed limited clinical success.
Purpose of the Study:
- To review the structure, function, and regulation of MYB in cancer.
- To explore novel MYB-targeted therapeutic strategies based on recent insights into MYB's role in oncogenesis.
Main Methods:
- Literature review focusing on MYB structure, function, regulation, and oncogenic roles.
- Analysis of emerging MYB-targeted therapies, including genetic therapy, RNA interference, microRNAs, and small molecules.
Main Results:
- Recent research has clarified MYB's role in tumor transformation and its regulatory mechanisms.
- Novel therapeutic approaches targeting MYB co-regulators and transcriptional elongation show promise.
Conclusions:
- Understanding MYB's regulatory network is key to developing effective cancer therapies.
- Emerging MYB-targeted treatments offer new hope for patients with MYB-driven cancers.
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