Department of Systems Biology and.
Carcinogenesis. 2013 Oct;34(10):2244-52. doi: 10.1093/carcin/bgt186. Epub 2013 May 30.
Chemotherapeutic agents have been the mainstay of cancer therapy for years. However, their effectiveness has been limited by toxicities they impart on normal cells. Staurosporine (ST) has been shown to arrest normal, but not breast cancer, cells in G1. Therefore, ST may become a chemoprotective agent, arresting normal cells while allowing tumor cells to enter cell cycle phases where they are sensitive to chemotherapeutic agents. Understanding the mechanism of ST-mediated G1 arrest may allow for a beneficial chemoprotective treatment strategy for patients. We utilized 76NE6 (pRb+/p53-), 76NF2V (pRb+/p53+) and 76NE7 (pRb-/P53+) non-tumorigenic human mammary epithelial cell lines to understand the role of the Rb and p53 pathways in ST-directed G1 arrest. CDK4 was downregulated by ST in Rb+ cells, but its presence could not reverse the arrest, neither did its stable downregulation alter ST-mediated cellular response. ST-mediated G1 arrest required pRb, which in turn initiated a cascade of events leading to inhibition of CDK4. Further assessment of this pathway revealed that Chk1 expression and activity were required for the Rb-dependent arrest. For example, pRb+ cells with small interfering RNA to Chk1 had approximately 60% less cells in G1 phase compared with controls and pRb- cells do not arrest upon ST. Furthermore, Chk1 expression facilitates the release of the Rb+ cells from G1 arrest. Collectively, our data suggest that pRb cooperates with Chk1 to mediate a G1 arrest only in pRb+ cells. The elucidation of this pathway can help identify novel agents to protect cancer patients against the debilitating effects of chemotherapy.
化疗药物多年来一直是癌症治疗的主要手段。然而,它们的有效性受到其对正常细胞毒性的限制。星形孢菌素 (ST) 已被证明可使正常细胞但不是乳腺癌细胞停滞在 G1 期。因此,ST 可能成为一种化学保护剂,阻止正常细胞进入细胞周期,使肿瘤细胞对化疗药物敏感。了解 ST 介导的 G1 期阻滞的机制可能为患者提供有益的化学保护治疗策略。我们利用 76NE6(pRb+/p53-)、76NF2V(pRb+/p53+)和 76NE7(pRb-/P53+)非致瘤性人乳腺上皮细胞系来了解 Rb 和 p53 途径在 ST 诱导的 G1 期阻滞中的作用。CDK4 在 Rb+细胞中被 ST 下调,但它的存在不能逆转阻滞,其稳定下调也不能改变 ST 介导的细胞反应。ST 介导的 G1 期阻滞需要 Rb,它反过来启动了一系列事件,导致 CDK4 抑制。对该途径的进一步评估表明,Chk1 表达和活性是 Rb 依赖性阻滞所必需的。例如,用 Chk1 的小干扰 RNA 处理的 pRb+细胞中 G1 期的细胞数比对照减少了约 60%,而 pRb-细胞在 ST 作用下不会停滞。此外,Chk1 表达有助于 Rb+细胞从 G1 期阻滞中释放。总的来说,我们的数据表明,pRb 与 Chk1 合作仅在 pRb+细胞中介导 G1 期阻滞。阐明该途径可以帮助确定新型药物来保护癌症患者免受化疗的有害影响。