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Induction of heme oxygenase-1 by cobalt protoporphyrin enhances the antitumour effect of bortezomib in adult T-cell leukaemia cells

机译:钴原卟啉诱导血红素加氧酶-1增强硼替佐米对成年T细胞白血病细胞的抗肿瘤作用

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摘要

Adult T-cell leukaemia (ATL) is a lethal neoplasia derived from HTLV-1-infected T lymphocytes frequently exhibiting nuclear factor-κB (NF-κB) activation. Despite the use of various treatment regimens, the prognosis of ATL is poor, and new treatment strategies are urgently needed. We therefore explored the effect and the molecular mechanism of a proteasome inhibitor, bortezomib, in ATL cells. We found bortezomib-induced cell death, and bortezomib suppressed constitutive NF-κB activation via I-κB stabilisation in three ATL cell lines (TaY, MT-2 and MT-4). An oligonucleotide DNA microarray analysis of TaY cells revealed upregulation of genes encoding heat shock proteins (HSPA1A, STIP1, HSPA1B, and HSPCA), genes related to protein folding (CDC37 and ANAPC5), Fas-associated factor 1(FAF1) and an oxidative stress-related gene, heme oxygenase-1(HMOX-1), known to be a target gene of hypoxia-inducible gene-1 alpha (HIF-1 alpha). Cobalt protoporphyrin induced HMOX-1, instead of HIF-1 alpha expression and increased bortezomib-induced apoptosis in the presence of pharmacologically effective doses of bortezomib. In contrast, zinc protoporphyrin downregulated HMOX-1 expression, thereby partially inhibiting bortezomib-induced cell death. This indicates that HMOX-1 may modulate anticancer effects of bortezomib in ATL cells, and could be a molecular target in treating ATL patients.
机译:成人T细胞白血病(ATL)是一种致命的肿瘤,起源于HTLV-1感染的T淋巴细胞,经常表现出核因子-κB(NF-κB)激活。尽管使用了各种治疗方案,但ATL的预后很差,迫切需要新的治疗策略。因此,我们探讨了蛋白酶体抑制剂硼替佐米在ATL细胞中的作用及其分子机制。我们发现了硼替佐米诱导的细胞死亡,并且硼替佐米通过三种ATL细胞系(TaY,MT-2和MT-4)中的I-κB稳定抑制了本构性NF-κB活化。 TaY细胞的寡核苷酸DNA微阵列分析显示,编码热激蛋白(HSPA1A,STIP1,HSPA1B和HSPCA)的基因,与蛋白折叠相关的基因(CDC37和ANAPC5),Fas相关因子1(FAF1)和氧化应激的基因上调。相关基因,血红素加氧酶-1(HMOX-1),已知是缺氧诱导基因-1α(HIF-1 alpha)的靶基因。在存在药理学有效剂量的硼替佐米的情况下,钴原卟啉诱导HMOX-1,而不是HIF-1α表达,并增加硼替佐米诱导的细胞凋亡。相反,锌原卟啉下调了HMOX-1的表达,从而部分抑制了硼替佐米诱导的细胞死亡。这表明HMOX-1可能调节硼替佐米在ATL细胞中的抗癌作用,并且可能是治疗ATL患者的分子靶标。

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