Zhang Lihong, Peng Yang, Uray Ivan P, Shen Jianfeng, Wang Lulu, Peng Xiangdong, Brown Powel H, Tu Wei, Peng Guang
Department of Oncology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China.
Department of Clinical Cancer Prevention, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
DNA Repair (Amst). 2017 Dec;60:89-101. doi: 10.1016/j.dnarep.2017.10.009. Epub 2017 Oct 24.
Investigation of natural products is an attractive strategy to identify novel compounds for cancer prevention and treatment. Numerous studies have shown the efficacy and safety of natural products, and they have been widely used as alternative treatments for a wide range of illnesses, including cancers. However, it remains unknown whether natural products affect homologous recombination (HR)-mediated DNA repair and whether these compounds can be used as sensitizers with minimal toxicity to improve patients' responses to radiation therapy, a mainstay of treatment for many human cancers. In this study, in order to systematically identify natural products with an inhibitory effect on HR repair, we developed a high-throughput image-based HR repair screening assay and screened a chemical library containing natural products. Among the most interesting of the candidate compounds identified from the screen was β-thujaplicin, a bioactive compound isolated from the heart wood of plants in the Cupressaceae family, can significantly inhibit HR repair. We further demonstrated that β-thujaplicin inhibits HR repair by reducing the recruitment of a key HR repair protein, Rad51, to DNA double-strand breaks. More importantly, our results showed that β-thujaplicin can radiosensitize cancer cells. Additionally, β-thujaplicin sensitizes cancer cells to PARP inhibitor in different cancer cell lines. Collectively, our findings for the first time identify natural compound β-thujaplicin, which has a good biosafety profile, as a novel HR repair inhibitor with great potential to be translated into clinical applications as a sensitizer to DNA-damage-inducing treatment such as radiation and PARP inhibitor. In addition, our study provides proof of the principle that our robust high-throughput functional HR repair assay can be used for a large-scale screening system to identify novel natural products that regulate DNA repair and cellular responses to DNA damage-inducing treatments such as radiation therapy.
对天然产物进行研究是识别用于癌症预防和治疗的新型化合物的一种有吸引力的策略。大量研究已表明天然产物的有效性和安全性,并且它们已被广泛用作包括癌症在内的多种疾病的替代疗法。然而,天然产物是否会影响同源重组(HR)介导的DNA修复,以及这些化合物是否可以用作毒性最小的增敏剂以改善患者对放射治疗的反应,放射治疗是许多人类癌症的主要治疗方法,目前仍不清楚。在本研究中,为了系统地鉴定对HR修复具有抑制作用的天然产物,我们开发了一种基于高通量图像的HR修复筛选测定法,并筛选了一个包含天然产物的化学文库。从筛选中鉴定出的最有趣的候选化合物之一是β-崖柏素,一种从柏科植物的心材中分离出的生物活性化合物,它可以显著抑制HR修复。我们进一步证明,β-崖柏素通过减少关键HR修复蛋白Rad51向DNA双链断裂处的募集来抑制HR修复。更重要的是,我们的结果表明β-崖柏素可以使癌细胞对辐射敏感。此外,β-崖柏素在不同癌细胞系中使癌细胞对PARP抑制剂敏感。总体而言,我们的研究首次鉴定出天然化合物β-崖柏素,其具有良好的生物安全性,是一种新型的HR修复抑制剂,作为对辐射和PARP抑制剂等DNA损伤诱导治疗的增敏剂具有很大的转化为临床应用的潜力。此外,我们的研究提供了原理证明,即我们强大的高通量功能性HR修复测定法可用于大规模筛选系统,以鉴定调节DNA修复以及细胞对辐射治疗等DNA损伤诱导治疗的反应的新型天然产物。