Department of Radiation Oncology, Nanfang Hospital, Southern Medical University, Guangzhou, China.
Division of Spine Surgery, Department of Orthopaedics, Nanfang Hospital, Southern Medical University, Guangzhou, China.
Oncogene. 2021 Apr;40(17):3101-3117. doi: 10.1038/s41388-021-01768-8. Epub 2021 Apr 6.
Radiotherapy is essential to the treatment of nasopharyngeal carcinoma (NPC) and acquired or innate resistance to this therapeutic modality is a major clinical problem. However, the underlying molecular mechanisms in the radiation resistance in NPC are not fully understood. Here, we reanalyzed the microarray data from public databases and identified the protein tyrosine phosphatase receptor type D (PTPRD) as a candidate gene. We found that PTPRD was downregulated in clinical NPC tissues and NPC cell lines with its promoter hypermethylated. Functional assays revealed that PTPRD overexpression sensitized NPC to radiation in vitro and in vivo. Importantly, miR-454-3p directly targets PTPRD to inhibit its expression and biological effect. Interestingly, mechanistic analyses indicate that PTPRD directly dephosphorylates STAT3 to enhance Autophagy-Related 5 (ATG5) transcription, resulting in triggering radiation-induced autophagy. The immunohistochemical staining of 107 NPC revealed that low PTPRD and high p-STAT3 levels predicted poor clinical outcome. Overall, we showed that PTPRD promotes radiosensitivity by triggering radiation-induced autophagy via the dephosphorylation of STAT3, thus providing a potentially useful predictive biomarker for NPC radiosensitivity and drug target for NPC radiosensitization.
放射疗法对鼻咽癌(NPC)的治疗至关重要,而对这种治疗方式的获得性或先天性耐药是一个主要的临床问题。然而,NPC 中放射抵抗的潜在分子机制尚未完全阐明。在这里,我们重新分析了公共数据库中的微阵列数据,确定蛋白酪氨酸磷酸酯酶受体 D(PTPRD)为候选基因。我们发现 PTPRD 在临床 NPC 组织和 NPC 细胞系中表达下调,其启动子发生高度甲基化。功能测定显示,PTPRD 过表达可使 NPC 在体外和体内对放射敏感。重要的是,miR-454-3p 可直接靶向 PTPRD 抑制其表达和生物学效应。有趣的是,机制分析表明 PTPRD 可直接去磷酸化 STAT3 以增强 Autophagy-Related 5(ATG5)转录,从而触发放射诱导的自噬。对 107 例 NPC 的免疫组织化学染色显示,低 PTPRD 和高 p-STAT3 水平预示着不良的临床结局。总体而言,我们表明 PTPRD 通过去磷酸化 STAT3 触发放射诱导的自噬来促进放射敏感性,从而为 NPC 放射敏感性提供了一个潜在有用的预测生物标志物,并为 NPC 放射增敏提供了一个药物靶点。