Harada Hisashi, Grant Steven
Department of Oral and Craniofacial Molecular Biology, Massey Cancer Center, Virginia Commonwealth University Health Sciences System, Richmond VA, 23298, USA.
Crit Rev Eukaryot Gene Expr. 2012;22(2):117-29. doi: 10.1615/critreveukargeneexpr.v22.i2.40.
BIM represents a BH3-only proapoptotic member of the BCL-2 family of apoptotic regulatory proteins. Recent evidence suggests that in addition to its involvement in normal homeostasis, BIM plays a critical role in tumor cell biology, including the regulation of tumorigenesis through activities as a tumor suppressor, tumor metastasis, and tumor cell survival. Consequently, BIM has become the focus of intense interest as a potential target for cancer chemotherapy. The control of BIM expression is complex, and involves multiple factors, including epigenetic events (i.e., promoter acetylation or methylation, miRNA), transcription factors, posttranscriptional regulation, and posttranslational modifications, most notably phosphorylation. Significantly, the expression of BIM by tumor cells has been shown to play an important role in determining the response of transformed cells to not only conventional cytotoxic agents, but also to a broad array of targeted agents that interrupt cell signaling and survival pathways. Furthermore, modifications in BIM expression may be exploited to improve the therapeutic activity and potentially the selectivity of such agents. It is likely that evolving insights into the factors that regulate BIM expression will ultimately lead to novel BIM-based therapeutic strategies in the future.
BIM是凋亡调节蛋白BCL-2家族中仅含BH3结构域的促凋亡成员。最近的证据表明,除了参与正常的体内平衡外,BIM在肿瘤细胞生物学中也起着关键作用,包括通过作为肿瘤抑制因子、肿瘤转移和肿瘤细胞存活等活动来调节肿瘤发生。因此,BIM作为癌症化疗的潜在靶点已成为人们强烈关注的焦点。BIM表达的调控很复杂,涉及多种因素,包括表观遗传事件(即启动子乙酰化或甲基化、微小RNA)、转录因子、转录后调控和翻译后修饰,最显著的是磷酸化。值得注意的是,肿瘤细胞中BIM的表达在决定转化细胞对不仅传统细胞毒性药物,而且对一系列中断细胞信号传导和存活途径的靶向药物的反应中起着重要作用。此外,BIM表达的改变可被用于提高此类药物的治疗活性以及潜在的选择性。对调节BIM表达的因素不断深入的了解很可能最终会在未来带来基于BIM的新型治疗策略。