Affiliated Dongguan People's Hospital, Southern Medical University, Dongguan, China.
Shenzhen People's Hospital, Shenzhen, China.
Technol Cancer Res Treat. 2021 Jan-Dec;20:15330338211039127. doi: 10.1177/15330338211039127.
Cancer resistance to chemotherapy is closely associated with changes in transporter systems. In this study, we investigated the possible regulation of 1 copper ion transporter (ATP7A; ATPase copper transporting alpha) by microRNA miR-495 and its implications in cisplatin resistance and angiogenesis in esophageal cancer. MiR-495 and ATP7A mRNA expression in clinical tissue samples and 2 cancer cell lines (Eca-109 and TE1) were detected by quantitative real-time polymerase chain reaction. The levels of miR-495 and ATP7A expression in Eca-109 and TE1 cells were increased by transfection with miR-495 mimics and ATP7A-overexpression vectors. Cell proliferation, apoptosis, and angiogenesis were assessed by CCK-8, flow cytometry, and tube formation assays, respectively. The levels of TNF-α and VEGF in cell culture supernatants were detected by enzyme linked immunosorbent assay, and in situ expression of NLRP3 was measured by immunofluorescence. The binding of miR-495 to ATP7A sequences was verified by dual luciferase reporter assays. ATP7A expression was significantly increased, while miR-495 expression was decreased in the cancer tissues of esophageal cancer patients. MiR-495 mimics decreased the proliferation and promoted the apoptosis of cisplatin-resistant Eca-109 and TE1 cells. Furthermore, tube formation by human umbilical vein endothelial cells, TNF-α and VEGF secretion, and the levels of MRP1, ABCG1, ABCA1, and NLRP3 expression in cisplatin-resistant Eca-109 and TE1 cells were all reduced by miR-495 mimics. MiR-495 was shown to directly bind to gene sequences to repress ATP7A expression in Eca-109 and TE1 cells. ATP7A overexpression substantially abrogated the changes in proliferation, apoptosis, angiogenesis, and above-mentioned gene expression in cisplatin-resistant Eca-109 and TE1 cells. MiR-495 suppressed cisplatin resistance and angiogenesis in esophageal cancer cells by targeting gene expression.
癌症对化疗的耐药性与转运体系统的变化密切相关。在本研究中,我们研究了 microRNA miR-495 对 1 种铜离子转运蛋白(ATP7A;ATP 酶铜转运α)的可能调节作用及其在食管癌顺铂耐药和血管生成中的意义。通过实时定量聚合酶链反应检测临床组织样本和 2 种癌细胞系(Eca-109 和 TE1)中 miR-495 和 ATP7A mRNA 的表达。用 miR-495 模拟物和 ATP7A 过表达载体转染 Eca-109 和 TE1 细胞,增加 miR-495 和 ATP7A 的表达水平。通过 CCK-8、流式细胞术和管形成测定分别评估细胞增殖、凋亡和血管生成。通过酶联免疫吸附试验检测细胞培养上清液中 TNF-α和 VEGF 的水平,通过免疫荧光法测量 NLRP3 的原位表达。通过双荧光素酶报告基因测定验证 miR-495 与 ATP7A 序列的结合。ATP7A 表达在食管癌患者的癌组织中显著增加,而 miR-495 表达降低。miR-495 模拟物降低了顺铂耐药的 Eca-109 和 TE1 细胞的增殖,并促进了其凋亡。此外,miR-495 模拟物降低了人脐静脉内皮细胞的管形成、TNF-α和 VEGF 的分泌,以及顺铂耐药的 Eca-109 和 TE1 细胞中 MRP1、ABCG1、ABCA1 和 NLRP3 表达水平。miR-495 被证明可直接结合 基因序列,抑制 Eca-109 和 TE1 细胞中 ATP7A 的表达。ATP7A 过表达显著改变了顺铂耐药的 Eca-109 和 TE1 细胞的增殖、凋亡、血管生成和上述基因表达。miR-495 通过靶向 基因表达抑制食管癌细胞的顺铂耐药和血管生成。