医学分子生物学杂志 ›› 2024, Vol. 21 ›› Issue (4): 334-340.doi: 10.3870/j.issn.1672-8009.2024.04.007

• 论著 • 上一篇    下一篇

miR-424 靶向 FBXW7 对多发性骨髓瘤细胞增殖凋亡的影响 #br#

  

  1. 临汾市人民医院血液内科 山西省临汾市, 041000
  • 出版日期:2024-07-31 发布日期:2024-09-09
  • 基金资助:
    临汾市人民医院院级科研基金项目 (No. T2023023)

Effect of miR-424 on Proliferation and Apoptosis of Multiple Myeloma Cells by Targeting FBXW7 #br#

  1. Department of Hematology, Linfen Peoples Hospital, Linfen, Shanxi, 041000, China
  • Online:2024-07-31 Published:2024-09-09
  • Supported by:

摘要: 目的 探讨 miR-424 靶向 F-box WD 重复结构域 7 ( F-Box and WD repeat domain containing 7,FBXW7) 轴对多发性骨髓瘤 ( multiple myeloma, MM) 细胞增殖凋亡的影响方法 以实时荧光定量PCR (RT-qPCR) 实验检测人正常骨髓浆细胞与 MM 细胞系 MM. 1S、 RPMI 8226、 U266 miR-424 FBXW7 表达体外培养 U266 细胞并随机分为对照组、 miR-424 抑制剂组 (转染 miR-424 抑制剂)、 FBXW7过表达组 (转染 FBXW7 过表达质粒)、 阴性对照组 (转染 miR-424 阴性对照和空载质粒)、 miR-424 抑制剂 + FBXW7 敲低组 (转染 miR-424 抑制剂和 FBXW7siRNA)。 RT-qPCR 实验检测 miR-424 FBXW7 表达; Edu 染色、 TUNEL 染色分别检测增殖凋亡; 以蛋白质印迹实验检测增殖相关蛋白 ( Cyclin D1、PCNA)、 凋亡相关蛋白 (Bax、 Bcl-2) FBXW7 蛋白表达在裸鼠右腋皮下接种转染后的各组 U266 细胞来构建多发性骨髓瘤移植瘤裸鼠模型, 检测其移植瘤生长情况并比较其 21 d 移植瘤体积以双荧光素酶报告实验验证 miR-424 U266 细胞 FBXW7 的靶向调控作用结果 与人正常骨髓浆细胞相比, MM. 1S、RPMI 8226、 U266 细胞 miR-424 表达升高 (P< 0. 05), FBXW7 mRNA 表达降低 (P< 0. 05)。 与对照组相比, miR-424 抑制剂组FBXW7 过表达组细胞增殖率、 Cyclin D1、 PCNA Bcl-2 蛋白表达、 21 d 移植瘤体积降低 (P< 0. 05), FBXW7mRNA 表达凋亡率、 FBXW7 Bax 蛋白表达升高 (P< 0. 05); 阴性对照组细胞各指标无显著差异 (P > 0. 05)。 miR-424 抑制剂组相比, miR-424 抑制剂 + FBXW7 敲低组细胞增殖率、 Cyclin D1、 PCNA Bcl-2 蛋白表达、 21 d 移植瘤体积增大 ( P < 0. 05 ), FBXW7 mRNA 表达凋亡率、FBXW7 Bax 蛋白表达降低 (P< 0. 05)。 miR-424 可靶向下调 U266 细胞 FBXW7 表达结论 下调 miR- 424 可通过上调 FBXW7 表达而抑制 MM 细胞增殖及在裸鼠体内生长, 促使其凋亡

关键词: miR-424, FBXW7, 多发性骨髓瘤, 增殖, 凋亡

Abstract: Objective To investigate the effect of miR-424 on the proliferation and apoptosisof multiple myeloma ( MM) cells by targeting the F-box and WD repeat domain containing 7(FBXW7). Methods Real-time fluorescence quantitative PCR ( RT-qPCR) experiment was applied to detect the expression levels of miR-424 and FBXW7 in human normal bone marrow plasma cells and MM cell lines MM. 1S, RPMI 8226, U266. U266 cells were cultured in vitro and randomly separated into 5 groups: control group, miR-424 inhibitor group, FBXW7 overexpression group, negative control group, miR-424 inhibitor + FBXW7 knockdown group. Edu staining and TUNELstaining were applied to detect the cell proliferation and apoptosis, respectively. Western blotting assay was applied to detect the expression levels of proliferation related proteins ( Cyclin D1, PCNA), apoptosis related proteins (Bax, Bcl-2), and FBXW7 protein. A nude mouse model of multiple myeloma transplantation was constructed by subcutaneous inoculation of transfected U266 cells in the right axilla of nude mice, the growth of the transplanted tumors were detected and the transplanted tumor volume was compared on the 21st day. Dual luciferase reporter experiment was applied to verify the targeted regulatory effect of miR-424 on FBXW7 in U266 cells. Results In comparisonwith those in the normal human bone marrow plasma cells, the expression of miR-424 in theMM. 1S, RPMI 8226, and U266 cells were increased ( < 0. 05 ), while the expression of FBXW7 mRNA were decreased ( < 0. 05). In addition, when compared with the control group, the miR-424 inhibitor group and the FBXW7 overexpression group showed decreased cell proliferation rate, lower protein expression levels of Cyclin D1, PCNA and Bcl-2, and decreased transplanted tumor volume on the 21st day (< 0. 05), and increased apoptosis rate, FBXW7 mRNA and protein expression levels, and Bax protein expression level ( < 0. 05). There was no significant difference in the indicators in cells of the negative control group (> 0. 05). Moreover, when compared with the miR-424 inhibitor group, the miR-424 inhibitor + FBXW7 knockdown group exhibited increased cell proliferation rate, Cyclin D1, PCNA and Bcl-2 protein expression, and transplanted tumor volume on the 21st day (< 0. 05), and decreased apoptosis rate, FBXW7 mRNA and protein expression levels, and Bax protein expression level ( < 0. 05). It was also observed that miR-424 was able to targetly downregulate FBXW7 expression in U266 cells. Conclusion Down-regulation of miR-424 can inhibit MM cell proliferation and growth in nude mice, and promote the apoptosis by up-regulating FBXW7 expression.

Key words: miR-424, FBXW7, multiple myeloma, proliferation, apoptosis

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