Department of Biological Chemistry, Medical School, University of Athens, 75 M. Asias, Goudi, 11527 Athens, Greece.
Cancer Lett. 2011 Mar 1;302(1):1-10. doi: 10.1016/j.canlet.2010.10.020.
Glucocorticoids (GCs) are provided to hormone-refractory prostate cancer (HRPC) patients partly due to the inhibitory effects on adrenal androgen production acting as a pituitary suppressant. Nowadays, the combination of chemotherapy and dexamethasone is a standard treatment for HRPC patients while increasing evidence suggests that a lot of local tissue factors like growth factors, angiogenic/lymphogenic factors, apoptosis-related factors, cytokines related to the transition of prostate cancer from androgen dependence to hormone-refractory status, are among the targets of GR signaling. However, although glucocorticoids have been recognized to be one of a limited number of treatment options for HRPC, the molecular basis of GC-induced effects in prostate cancer remains poorly defined. In this review, we focus on how GCs induce effects via the GR-mediated transcriptional regulation of specific genes known to play key roles in cellular/tissue functions, including growth, apoptosis, inflammation, metastasis, differentiation, cell survival and angiogenesis. In our effort to unravel the molecular interplay of GR signaling with other signaling cascades prevalent in prostate cancer, we also include a detailed description of GR gene and protein structure/function and provide the knowledge gained recently into the mechanism(s) of the cross talk between GR and other signaling cascades via which GCs exert their multiple effects.
糖皮质激素(GCs)被提供给激素难治性前列腺癌(HRPC)患者,部分原因是它们抑制肾上腺雄激素产生的作用,作为垂体抑制剂。如今,化疗联合地塞米松是 HRPC 患者的标准治疗方法,而越来越多的证据表明,许多局部组织因素,如生长因子、血管生成/淋巴管生成因子、凋亡相关因子、与前列腺癌从雄激素依赖向激素难治状态转变相关的细胞因子,都是 GR 信号的作用靶点。然而,尽管糖皮质激素已被确认为 HRPC 的少数治疗选择之一,但 GC 诱导前列腺癌效应的分子基础仍未得到明确界定。在这篇综述中,我们重点关注 GC 通过 GR 介导的特定基因的转录调控如何诱导效应,这些基因已知在细胞/组织功能中发挥关键作用,包括生长、凋亡、炎症、转移、分化、细胞存活和血管生成。在我们努力揭示 GR 信号与前列腺癌中普遍存在的其他信号级联之间的分子相互作用的过程中,我们还详细描述了 GR 基因和蛋白质的结构/功能,并提供了最近关于 GR 与其他信号级联之间相互作用的机制的知识,GC 通过这种相互作用发挥其多种效应。