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首页> 外文期刊>Metallomics. integrated biometal science >Strong induction of iodothyronine deiodinases by chemotherapeutic selenocompounds
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Strong induction of iodothyronine deiodinases by chemotherapeutic selenocompounds

机译:化疗硒化合物对碘甲状腺素脱碘酶的强诱导作用

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摘要

The biological activity of thyroid hormones (TH) is regulated by selenoenzymes of the iodothyronine deiodinase (DIO) family catalysing TH activating and inactivating reactions. Besides TH metabolism, several studies indicate an important role of DIO isoenzymes in tumorigenesis and cancer growth. It is therefore of therapeutic importance to identify modulators of DIO expression. We have synthesized and studied a series of selenocompounds containing a methyl- or benzyl-imidoselenocarbamate backbone. One of these novel compounds had chemotherapeutic activities in a murine xenograft tumour model by an unknown mechanism. Therefore, we tested their effects on DIO expression in vitro. In HepG2 hepatocarcinoma cells, DIO1 activity was strongly (up to 10-fold) increased by the methyl-but not by the corresponding benzyl-imidoselenocarbamates. Steady-state mRNA levels remained unaltered under these conditions indicating a post-transcriptional mode of action. The effects were further characterized in HEK293 cells stably expressing DIO1, DIO2 or DIO3. Even within the artificial genetic context of the expression vectors, all three DIO isoenzymes were up-regulated by the methyl-and to a lesser extent by the benzyl-imidoselenocarbamates. Consistent stimulating effects were observed with methyl-N, N'-di(quinolin-3-ylcarbonyl)-imidoselenocarbamate (EI201), a selenocompound known for its anti-tumour activity. DIO inducing effects were unrelated to the intracellular accumulation of selenium, yet the precise mode of action remains elusive. Collectively, our data highlight that these selenocompounds may constitute interesting pharmacological compounds for modifying DIO expression potentially affecting the balance between cell differentiation and proliferation.
机译:甲状腺激素(TH)的生物活性受碘甲状腺素脱碘酶(DIO)家族的硒酶催化,催化TH活化和失活反应。除TH代谢外,多项研究表明DIO同工酶在肿瘤发生和癌症生长中也起着重要作用。因此,鉴定DIO表达的调节剂具有治疗重要性。我们已经合成和研究了一系列含有甲基或苄基亚氨基硒代氨基甲酸酯骨架的硒化合物。这些新型化合物之一在鼠异种移植肿瘤模型中具有未知的化学治疗活性。因此,我们测试了它们在体外对DIO表达的影响。在HepG2肝癌细胞中,DIO1活性被甲基(而非相应的苄基亚氨基硒基氨基甲酸酯)强烈增强(最多10倍)。在这些条件下,稳态mRNA水平保持不变,表明转录后的作用方式。在稳定表达DIO1,DIO2或DIO3的HEK293细胞中进一步表征了这种作用。即使在表达载体的人工遗传背景下,所有三种DIO同工酶都被甲基上调,而苄基亚氨基硒基氨基甲酸酯在较小程度上被上调。用甲基-N,N'-二(喹啉-3-基羰基)-亚氨基硒代氨基甲酸酯(EI201)(一种以其抗肿瘤活性而闻名的硒代化合物)观察到一致的刺激作用。 DIO诱导作用与硒的细胞内积累无关,但是确切的作用方式仍然难以捉摸。总的来说,我们的数据突出表明这些硒化合物可能构成有趣的药理化合物,用于修饰DIO表达,从而可能影响细胞分化与增殖之间的平衡。

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