Liu Xiaofeng, Xu Yunxiao, Han Liping, Yi Yan
Department of Hematology, the Second Xiangya Hospital, Central South University, Changsha, Hunan Province, P.R. China.
School of Life Science, Changchun Normal University, Changchun, Jilin Province, P.R. China.
J Cancer. 2018 Mar 15;9(7):1259-1266. doi: 10.7150/jca.23992. eCollection 2018.
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 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.
转录因子MYB对多种癌症的肿瘤发生至关重要,尤其是白血病、乳腺癌、结肠癌、腺样囊性癌和脑癌。因此,MYB被视为肿瘤治疗的一个有吸引力的靶点。然而,三十年前在白血病治疗中开展的针对反义寡脱氧核苷酸的开创性研究,由于临床效果不理想而中断。近年来,MYB在肿瘤转化中的作用越来越清晰。此外,MYB的调控机制,如MYB共调节因子对MYB活性的重要作用以及转录延伸对MYB表达的作用,也已被揭示。这些发现为抑制MYB的新方法奠定了基础。本综述讨论了MYB的结构、功能和调控,重点关注MYB相关肿瘤发生的最新见解以及如何探索靶向MYB的治疗方法。此外,还描述了主要的靶向MYB的疗法,包括新型基因疗法、RNA干扰、微小RNA和低分子量化合物,这些都是特别有前景的抑制剂,可靶向MYB共调节因子和转录延伸,并评估了它们的前景。