[MiR-1-3p inhibits mitophagy in esophageal squamous cell carcinoma by targeting SLC7A11]
- PMID: 40692251
- DOI: 10.3760/cma.j.cn112152-20240219-00078
[MiR-1-3p inhibits mitophagy in esophageal squamous cell carcinoma by targeting SLC7A11]
Abstract
Objective: To investigate the effect of miR-1-3p on mitophagy in human esophageal squamous cell carcinoma (ESCC) cells and the related mechanisms. Methods: The differentially expressed miRNAs in ESCC were screened using the GEO database. Real-time quantitative polymerase chain reaction (RT-qPCR) was used to measure miR-1-3p expression in normal esophageal epithelial cells (HET-1A) and ESCC cell lines (TE1, KYSE30, KYSE150, KYSE410, Eca109). Bioinformatics tools were utilized to predict target genes of miR-1-3p, subcellular localization was confirmed by fluorescence in situ hybridization. The targeting relationship between miR-1-3p and SLC7A11 was validated using dual-luciferase reporter assay. Cell proliferation and apoptosis were detected by CCK8 assay and flow cytometry, respectively. Furthermore, experimental validation demonstrated that overexpression of SLC7A11 rescued the presence of the miR-1-3p/SLC7A11 axis. Confocal microscopy was used to detect changes in mitochondrial autophagic lysosomes, while transmission electron microscopy was employed to observe mitophagy and morphological alterations. Western blot was conducted to evaluate the expression of autophagy-related proteins LC3 and P62. Flow cytometry was used to measure mitochondrial membrane potential and reactive oxygen species (ROS). Immunohistochemistry was applied to assess SLC7A11 expression in 133 ESCC patient tissues and 115 normal esophageal epithelial tissues. The correlation between SLC7A11 expression level and clinicopathological features was analyzed. Survival analysis was performed using the Kaplan-Meier method, and Cox proportional hazard regression models were used for multivariate analysis. Results: The expression of miR-1-3p in ESCC cells was significantly lower than that in HET-1A cells (P<0.05). SLC7A11 was a target gene of miR-1-3p. Transfection of miR-1-3p mimic inhibited the proliferation of ESCC cells. CCK-8 assay results showed that the proliferative capacity of KYSE30 and KYSE410 cells in the miR-1-3p mimic group (absorbance values: 2.88±0.24 and 2.88±0.18, respectively) was significantly lower than that in the miRNA mimic negative control (NC) group (3.94±0.27, P<0.001; 4.20±0.21, P<0.001). Meanwhile, the proliferative capacity of KYSE30 and KYSE410 cells in the miR-1-3p mimic+SLC7A11-overexpression (OE) group (absorbance values: 3.57±0.15 and 3.60±0.13, respectively) was significantly higher than that in the miR-1-3p mimic +empty vector (EV) group (2.54±0.10, P<0.001, 2.36±0.16, P<0.001). Additionally, transfection of miR-1-3p mimic promoted apoptosis. Flow cytometry results demonstrated that the apoptosis rates of KYSE30 and KYSE410 cells in the miR-1-3p mimic group [(9.22±0.05)% and (6.55±0.37)%, respectively] were significantly higher than those in the miRNA mimic NC group [(0.81±0.17)%,P<0.001); (1.04±0.12)%, P<0.001]. Conversely, the apoptosis rates of KYSE30 and KYSE410 cells in the miR-1-3p mimic + SLC7A11-OE group [(0.73±0.04)% and (1.19±0.05)%, respectively] were significantly lower than those in the miR-1-3p mimic+EV group [(9.83±0.41)%, P<0.001); (6.09±0.17)%, P<0.00)]. MiR-1-3p mimic downregulated SLC7A11 protein expression and the LC3Ⅱ/LC3I ratio (P<0.05), upregulated P62 protein expression (P<0.05), this phenomenon can be rescued by overexpressing SLC7A11 (P<0.05). Additionally, miR-1-3p mimic increased ROS levels and decreased mitochondrial membrane potential (JC-1 aggregate/monomer ratio), this phenomenon can be rescued by overexpressing SLC7A11 (P<0.05). SLC7A11 expression was higher in ESCC tissues compared to normal esophageal epithelial tissues (P<0.001), and SLC7A11 serves as an independent prognostic factor in ESCC (HR=2.15, 95% CI: 1.27-3.65, P=0.004). Conclusion: miR-1-3p inhibits mitophagy in esophageal squamous cell carcinoma by targeting SLC7A11.
目的: 探讨miR-1-3p对人食管鳞状细胞癌(ESCC)细胞线粒体自噬的影响,并探讨其潜在的分子机制。 方法: 利用基因表达综合数据库筛选ESCC中差异表达的miRNA,采用实时荧光定量聚合酶链反应检测正常食管上皮细胞HET-1A和ESCC细胞TE1、KYSE30、KYSE150、KYSE410、Eca109中miR-1-3p的表达。使用生物信息学工具预测miR-1-3p的靶基因,采用荧光原位杂交技术检测miR-1-3p的亚细胞定位,双萤光素酶报告基因验证miR-1-3p和溶质运载体家族7成员11(SLC7A11)的靶向关系。使用细胞计数试剂盒8(CCK-8)和流式细胞术分别检测转染miR-1-3p mimic对细胞增殖和凋亡能力的影响,同时过表达SLC7A11,挽救实验证实miR-1-3p/SLC7A11轴的存在。共聚焦显微镜检测线粒体自噬溶酶体变化,透射电镜观察细胞内线粒体自噬现象及线粒体形态变化。Western blot检测自噬相关蛋白LC3、P62的表达。流式细胞术检测细胞内线粒体膜电位、活性氧(ROS)的变化。使用免疫组化检测133例初治ESCC患者肿瘤组织和115例正常食管上皮组织SLC7A11的表达(来源于上海芯超生物科技有限公司及2022年1月至2023年1月河北医科大学第四医院),分析SLC7A11与患者临床特征及预后的相关性。采用Kaplan-Meier方法进行生存分析,并使用Cox比例风险回归模型进行影响因素分析。 结果: ESCC细胞中miR-1-3p的表达水平均低于HET-1A细胞(P<0.05),miR-1-3p可靶向调控SLC7A11。转染miR-1-3p mimic可抑制ESCC细胞增殖,CCK-8结果显示miR-1-3p mimic组KYSE30和KYSE410细胞增殖能力(吸光度值分别为2.88±0.24和2.88±0.18)均低于miRNA mimic NC组(3.94±0.27和4.20±0.21,均P<0.05),miR-1-3p mimic+SLC7A11-OE组KYSE30和KYSE410细胞增殖能力(吸光度值分别为3.57±0.15和3.60±0.13)均高于miR-1-3p mimic+ EV组(2.54±0.10和2.36±0.16,均P<0.05);并促进其凋亡,流式细胞术结果显示,miR-1-3p mimic组KYSE30和KYSE410细胞凋亡率[分别为(9.22±0.05)%和(6.55±0.37)%]均高于miRNA mimic NC组[(0.81±0.17)%和(1.04±0.12)%,P<0.001],miR-1-3p mimic+SLC7A11-OE组KYSE30和KYSE410细胞凋亡率[分别为(0.73±0.04)%和(1.19±0.05)%]均低于miR-1-3p mimic+EV组[(9.83±0.41)%和(6.09±0.17)%,P<0.001]。同时抑制线粒体自噬(均P<0.05)。转染miR-1-3p mimic可下调SLC7A11蛋白的表达和自噬相关蛋白LC3Ⅱ/LC3Ⅰ的比例(P<0.05),上调P62蛋白的表达(P<0.05),过表达SLC7A11可以挽救这一现象(P<0.05)。转染miR-1-3p mimics后细胞内ROS水平升高,线粒体膜电位(JC-1聚合体与单体比值)降低,过表达SLC7A11可以挽救这一现象(均P<0.05)。ESCC组织中SLC7A11的表达水平高于正常食管上皮组织(P<0.001),且SLC7A11的表达(HR=2.15,95% CI:1.27~3.65,P=0.004)为影响ESCC预后的独立影响因素。 结论: miR-1-3p通过调控SLC7A11抑制ESCC线粒体自噬发挥抑癌作用。.
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