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首页> 外文期刊>Oncology reports >TRIB2 knockdown as a regulator of chemotherapy resistance and proliferation via the ERK/STAT3 signaling pathway in human chronic myelogenous leukemia K562/ADM cells
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TRIB2 knockdown as a regulator of chemotherapy resistance and proliferation via the ERK/STAT3 signaling pathway in human chronic myelogenous leukemia K562/ADM cells

机译:TRAP2通过ERK / Stat3信号通路作为人慢性髓性白血病K562 / ADM细胞的ERK / Stat3信号通路敲低作为化疗抗性和增殖的调节剂

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摘要

Acquired resistance to chemotherapy plays a critical role in human drug treatment failure in many tumor types. Multidrug resistance (MDR) to Adriamycin (ADM) also limits the efficacy of therapy in human chronic myelogenous leukemia (CML). The overexpression of drug efflux transporters is one mechanism uderlying MDR. In particular, the consistent activation of MDR1 and MDR-associated protein 1 (MRP1) is involved in drug resistance. In the present study, ADM-resistant human CML K562/ADM cells were stably transfected with a Tribbles homolog 2 (TRIB2) -targeted vector. A CCK-8 assay showed that the half maximal inhibitory concentration (IC50) of ADM and the cell proliferation were lower in the transfected cells compared with that in the parental K562/ADM cells. The mRNA and protein expression levels of MDR1 and MRP1 were determined by reverse transcription-polymerase chain reaction (RT-PCR), RT-quantitative PCR and western blot analysis. The results showed that the expression of MDR1 and MRP1 was significantly reduced in K562/ADM cells transfected with pGPU6/GFP/Neo-TRIB2. Due to the downregulation of MDR1 and MRP1, the intracellular accumulation of ADM was increased in the transfected cells compared with that in the parental K562/ADM cells. Therefore, the sensitivity of the K562/ADM cells to ADM was enhanced and proliferation was inhibited. Our research revealed that protein expression of the ERK signaling pathway was inhibited by downregulating TRIB2, indicating that the ERK pathway was involved in cell drug resistance and proliferation. Furthermore, we used the ERK-specific blocker U0126 to demonstrate this phenomenon. In summary, our research suggested that knockdown of TRIB2 could slow cell growth and reverse resistance, implying that TRIB2 is a potential therapy target for resistant human CML.
机译:获得了对化疗的抗性在许多肿瘤类型中的人体药物治疗失败中起着关键作用。对Adriamycin(ADM)的多药耐药性(MDR)还限制了治疗在人慢性髓性白血病(CML)中的疗效。药物流出转运蛋白的过度表达是一个持续的MDR的一种机制。特别地,MDR1和MDR相关蛋白1(MRP1)的一致激活涉及耐药性。在本研究中,稳定转染抗抗抗体的人CML K562 / ADM细胞,用围绕同源物2(TRIB2)的载体转染。 CCK-8测定结果表明,与父母K562 / ADM细胞中的转染细胞相比,转染细胞中的ADM和细胞增殖的半最大抑制浓度(IC50)较低。 MDR1和MRP1的mRNA和蛋白表达水平通过逆转录 - 聚合酶链反应(RT-PCR),RT-定量PCR和Western印迹分析测定。结果表明,用PGPU6 / GFP / Neo-Trom2转染的K562 / ADM细胞中MDR1和MRP1的表达显着降低。由于MDR1和MRP1的下降,与父母K562 / ADM细胞中的转染细胞中,ADM的细胞内积累增加。因此,抑制了K562 / ADM细胞对ADM的敏感性和增殖。我们的研究表明,通过下调TRED2,表明ERK途径抑制了ERK信号通路的蛋白表达,表明ERK途径参与了细胞耐药性和增殖。此外,我们使用ERK特定的阻止器U0126来展示这种现象。总之,我们的研究表明,TRED2的敲低可以缓慢细胞生长和逆向阻力,这意味着TRIB2是抗性人CML的潜在治疗目标。

著录项

  • 来源
    《Oncology reports》 |2018年第4期|共9页
  • 作者单位

    Binzhou Med Univ Yantai Affiliated Hosp Dept Pediat Yantai 264100 Shandong Peoples R China;

    Binzhou Med Univ Yantai Affiliated Hosp Dept Pediat Yantai 264100 Shandong Peoples R China;

    Binzhou Med Univ Yantai Affiliated Hosp Dept Pediat Yantai 264100 Shandong Peoples R China;

    Binzhou Med Univ Dept Biochem &

    Mol Biol Key Lab Tumor Mol Biol 346 Guanhai Rd Yantai 264003;

    Binzhou Med Univ Dept Biochem &

    Mol Biol Key Lab Tumor Mol Biol 346 Guanhai Rd Yantai 264003;

    Binzhou Med Univ Dept Biochem &

    Mol Biol Key Lab Tumor Mol Biol 346 Guanhai Rd Yantai 264003;

    Binzhou Med Univ Dept Biochem &

    Mol Biol Key Lab Tumor Mol Biol 346 Guanhai Rd Yantai 264003;

    Binzhou Med Univ Dept Biochem &

    Mol Biol Key Lab Tumor Mol Biol 346 Guanhai Rd Yantai 264003;

    Binzhou Med Univ Dept Biochem &

    Mol Biol Key Lab Tumor Mol Biol 346 Guanhai Rd Yantai 264003;

    Binzhou Med Univ Yantai Affiliated Hosp Dept Pediat Yantai 264100 Shandong Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学;
  • 关键词

    TRIB2; adriamycin resistance; proliferation; MDR1; MRP1;

    机译:TRID2;亚霉素抵抗;增殖;MDR1;MRP1;

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