WNK2通过抑制酪氨酸磷酸酶活性延缓肝细胞癌的增殖和侵袭
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河北北方学院附属第一医院

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河北省卫计委医学科学研究重点课题计划(20210956)


WNK2 delays the proliferation and invasion of HCC by inhibiting tyrosine phosphatase activity
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The First Affiliated Hospital of Hebei North University

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    摘要:

    摘要:目的 检测WNK2对肝细胞癌中SHP2(酪氨酸磷酸酶)表达的影响以及探讨对肝细胞癌细胞增殖和迁移能力的影响;方法 将WNK2-mimic和WNK2-inhibitor以及相应的阴性对照转染HepG2细胞,采用Balb/c裸鼠皮下成瘤实验检测WNK2对肝细胞癌增殖能力的影响;采用western blot检测瘤组织中WNK2、p-SHP2、p-AKT和p-ERK1/2的表达;使用SHP2抑制剂PHPS1进行处理之后,采用western blot检测HepG2细胞中WNK2、p-SHP2、p-AKT和p-ERK1/2的表达;使用细胞划痕实验和Transwell检测HepG2细胞的迁移能力和侵袭能力;采用单克隆增殖实验和CCK8检测HepG2细胞的增殖能力;结果 与NC组相比,sh-RNA WNK2组裸鼠的瘤体体积显著增大(p<0.01),而WNK2-mimic组裸鼠的瘤体体积显著减小(p<0.01);Western blot结果显示,与NC组相比,sh-RNA WNK2组WNK2的表达显著降低(p<0.01),p-SHP2、p-AKT和p-ERK1/2的表达显著升高(p<0.01);而WNK2-mimic组WNK2的表达显著升高(p<0.01),p-SHP2、p-AKT和p-ERK1/2的表达显著降低(p<0.01);在体外实验当中,相对于NC组,WNK2-inhibitor组中WNK2的表达显著降低(p<0.01),p-SHP2、p-AKT和p-ERK1/2的表达显著升高(p<0.01);相对于NC PHPS1组,WNK2-inhibitor PHPS1组中WNK2的表达显著降低(p<0.01),而p-SHP2、p-AKT和p-ERK1/2的表达则被逆转并且与NC PHPS1组没有显著性差异(p>0.05);细胞划痕实验和Transwell结果显示,相对于NC组,WNK2-inhibitor组HepG2细胞的迁移和侵袭能力显著升高(p<0.01);NC PHPS1组和WNK2-inhibitor PHPS1组HepG2细胞的迁移和侵袭能力显著降低并且没有显著性差异(p>0.05);单克隆增殖实验结果显示,相对于NC组,WNK2-inhibitor组HepG2细胞的增殖能力显著升高(p<0.01),而NC PHPS1组和WNK2-inhibitor PHPS1组HepG2细胞的增殖能力显著降低并且没有显著性差异(p>0.05)。

    Abstract:

    Abstract: Objective To investigate the effect of WNK2 on the expression of SHP2 (tyrosine phosphatase) in HCC and to explore the effect on the proliferation and migration of HCC. Methods HepG2 cells were transfected with WNK2-mimic, WNK2-inhibitor, and corresponding negative control. The effect of WNK2 on the proliferation of HCC was examined by subcutaneous tumorigenesis assay in Balb/c nude mice. The expressions of WNK2, p-SHP2, p-AKT, and p-ERK1/2 in tumor tissues were detected by Western blot. After treatment with SHP2 inhibitor PHPS1, the expressions of WNK2, p-SHP2, p-AKT, and p-ERK1/2 in HepG2 cells were detected by Western blot. The migration ability and invasion ability of HepG2 cells were detected by cell scratch assay and Transwell. The proliferation ability of HepG2 cells was detected by monoclonal proliferation assay. Results Compared with the NC group, the tumor volume of nude mice in the sh-RNA WNK2 group was significantly increased (p<0.01), while that of nude mice in the WNK2-mimic group was significantly decreased (p<0.01). Western blot results showed that compared with the NC group, the expression of WNK2 in the sh-RNA WNK2 group was significantly decreased (p<0.01), while the expressions of p-SHP2, p-AKT, and p-ERK1/2 were significantly increased (p<0.01). However, the expression of WNK2 was significantly increased in the WNK2-mimic group (p<0.01), and the expressions of p-SHP2, p-AKT, and p-ERK1/2 were significantly decreased (p<0.01). In vitro experiment, compared with the NC group, the expression of WNK2 was significantly decreased in the WNK2-inhibitor group (p<0.01), while the expressions of p-SHP2, p-AKT and p-ERK1/2 were significantly increased in the WNK2-inhibitor group (p<0.01). Compared with the NC PHPS1 group, the expression of WNK2 was significantly decreased in the WNK2-inhibitor PHPS1 group (p<0.01), while the expressions of p-SHP2, p-AKT, and p-ERK1/2 were reversed and had no significant differences compared with the NC PHPS1 group (p>0.05). The cell scratch assay and Transwell results showed that the migration and invasion ability of HepG2 cells in the WNK2-inhibitor group was significantly increased compared with the NC group (p<0.01). The migration and invasion ability of HepG2 cells in the NC PHPS1 group and WNK2-inhibitor PHPS1 group were significantly decreased with no significant difference (p>0.05). The results of the monoclonal proliferation experiment showed that the proliferation capacity of HepG2 cells in the WNK2-inhibitor group was significantly increased compared with the NC group (p<0.01), while the proliferation ability of HepG2 cells in the NC PHPS1 group and WNK2-inhibitor PHPS1 group was significantly decreased with no significant difference (p>0.05). Conclusion WNK2 inhibits the expression of SHP2 in HCC by regulating the level of oxidative stress, delaying the proliferation and migration of HCC.

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  • 收稿日期:2023-08-04
  • 最后修改日期:2024-01-15
  • 录用日期:2024-01-16
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