Jun Fu, Peng Zheng, Zhang Yi, Shi Dazun
Department of Oncology, Xiangya Hospital, Central South University, Changsha, China.
Department of Neurosurgery, Sanbo Brain Hospital, Capital Medical University, Beijing, China.
Front Oncol. 2020 Apr 28;10:557. doi: 10.3389/fonc.2020.00557. eCollection 2020.
The development of drug resistance remains one of the major challenges to current chemotherapeutic regimens in gestational trophoblastic neoplasia (GTN). Further understanding on the mechanisms of drug resistance would help to develop more effective therapy to treat GTN. Herein, tandem mass tag-based (TMT) quantitative proteomic technique was used to establish drug resistance-related proteomic profiles in chemoresistant GTN cell models (JEG3/MTX, JEG3/VP16, JEG3/5-Fu). In total, we identified 5,704 protein groups, among which 4,997 proteins were quantified in JEG3 and its chemoresistant sublines. Bioinformatics analysis revealed that multiple biological processes/molecular pathways/signaling networks were involved in the regulation of drug resistance in chemoresistant JEG3 sublines. SOX8 was upregulated in all the three chemoresistant sublines, and its function was further investigated. Knockdown of SOX8 significantly reduced cell viability, impaired soft agar clonogenesis, and increased caspase-3 activities after drug treatment in JEG3 chemoresistant sublines. In addition, over-expression of SOX8 promoted cell survival, enhanced soft agar clonogenesis, and attenuated caspase-3 activities after drug treatment in GTN cells. Importantly, SOX8 might be a potential regulator of reactive oxygen species (ROS) homeostasis, as SOX8 regulated the expression of antioxidant enzymes (GPX1, HMOX1) and reduced drug-induced ROS accumulation in GTN cell models. Collectively, SOX8 might promote drug resistance through attenuating the accumulation of ROS induced by chemotherapeutic drugs in GTN cells. Targeting SOX8 might be useful to sensitize GTN cells to chemotherapy.
耐药性的产生仍然是当前妊娠滋养细胞肿瘤(GTN)化疗方案面临的主要挑战之一。进一步了解耐药机制将有助于开发更有效的GTN治疗方法。在此,基于串联质谱标签(TMT)的定量蛋白质组学技术被用于建立化疗耐药GTN细胞模型(JEG3/MTX、JEG3/VP16、JEG3/5-Fu)中与耐药相关的蛋白质组图谱。我们总共鉴定出5704个蛋白质组,其中4997种蛋白质在JEG3及其化疗耐药亚系中得到定量。生物信息学分析表明,多个生物学过程/分子途径/信号网络参与了化疗耐药JEG3亚系中耐药性的调节。SOX8在所有三个化疗耐药亚系中均上调,并对其功能进行了进一步研究。在JEG3化疗耐药亚系中,敲低SOX8可显著降低细胞活力,损害软琼脂克隆形成能力,并在药物处理后增加caspase-3活性。此外,在GTN细胞中过表达SOX8可促进细胞存活,增强软琼脂克隆形成能力,并在药物处理后减弱caspase-3活性。重要的是,SOX8可能是活性氧(ROS)稳态的潜在调节因子,因为SOX8调节抗氧化酶(GPX1、HMOX1)的表达,并减少GTN细胞模型中药物诱导的ROS积累。总体而言,SOX8可能通过减弱化疗药物在GTN细胞中诱导的ROS积累来促进耐药性。靶向SOX8可能有助于使GTN细胞对化疗敏感。