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首页> 外文期刊>Life sciences >Thioredoxin-1 phosphorylated at T100 is needed for its anti-apoptotic activity in HepG2 cancer cells.
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Thioredoxin-1 phosphorylated at T100 is needed for its anti-apoptotic activity in HepG2 cancer cells.

机译:T100磷酸化的硫氧还蛋白1需要其在HepG2癌细胞中的抗凋亡活性。

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AIMS: Thioredoxin-1 (Trx) is an important protein involved in the regulation of apoptosis and in enhancing drug resistance in cancer cells. Threonine100 (T100) of Trx was reported to be phosphorylated; however, the role of this phosphorylation in regulating activity remains unresolved. We explored whether and how the phosphorylation of Trx is involved in drug resistance in cancer cells. MAIN METHODS: The levels of phosphorylated Trx were detected by sandwich ELISA. Cell viability was investigated using Alamar Blue assay, and apoptosis was evaluated with Hoechst33258 staining. Western blotting was used to examine the changes in the expression levels of Trx, NF-kappaB p65 subunit, ASK-1 and 6His tag. Additionally, we took advantage of phorbol-12-myristate-13-acetate (PMA)to activate protein kinase C (PKC) and staurosporine to inhibit PKC. KEY FINDINGS: Trx mutated at T100 causes lower survival rate induced by H(2)O(2), and higher apoptosis rate induced by cis-platinum and adriamycin in HepG2 cells. T100 of Trx can be phosphorylated through the PKC-dependent pathway. Furthermore, the resistance of anticancer drugs can be decreased when the phosphorylation of T100 in Trx was blocked by staurosporine. Though the Trx-ASK1 complex is not affected, the phosphorylation contributes to the nuclear location of Trx, and then up-regulates the activity of NF-kappaB. SIGNIFICANCE: It was firstly found that the phosphorylation of Trx at T100 plays an important role in its cytoprotective activity in cancer cells. Thus, besides blocking the active site of Trx, inhibiting the phosphorylation of Trx at T100 may be a new potential cancer therapy target.
机译:目的:硫氧还蛋白-1(Trx)是一种重要的蛋白质,参与调节细胞凋亡并增强癌细胞的耐药性。据报道,Trx的苏氨酸100(T100)被磷酸化。然而,这种磷酸化在调节活性中的作用仍未得到解决。我们探讨了Trx的磷酸化是否以及如何参与癌细胞的耐药性。主要方法:通过夹心ELISA检测磷酸化的Trx水平。使用Alamar Blue分析法研究细胞活力,并使用Hoechst33258染色评估细胞凋亡。使用蛋白质印迹法检查Trx,NF-κBp65亚基,ASK-1和6His标签表达水平的变化。此外,我们利用了phorbol-12-肉豆蔻酸酯13-乙酸酯(PMA)来激活蛋白激酶C(PKC)和星形孢菌素来抑制PKC。主要发现:在T100处突变的Trx导致H(2)O(2)诱导的较低存活率,以及顺铂和阿霉素在HepG2细胞中诱导的较高凋亡率。 Trx的T100可以通过PKC依赖性途径进行磷酸化。此外,当星形孢菌素阻断Trx中的T100的磷酸化时,可以降低抗癌药的耐药性。尽管Trx-ASK1复合物不受影响,但磷酸化有助于Trx的核定位,然后上调NF-kappaB的活性。意义:首次发现Trx在T100的磷酸化在其对癌细胞的细胞保护活性中起着重要作用。因此,除了阻断Trx的活性位点外,在T100抑制Trx的磷酸化可能是新的潜在癌症治疗靶点。

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