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Melphalan-Induced Expression of IFN-β in MOPC-315 Tumor-Bearing Mice and Its Importance for the Up-Regulation of TNF-α Expression

机译:美法仑诱导的IFN-β在MOPC-315荷瘤小鼠中的表达及其对上调TNF-α表达的重要性

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We have previously shown that administration of a low-dose of melphalan (l-phenylalanine mustard; l-PAM) to mice bearing a large s.c. MOPC-315 tumor leads to up-regulation of TNF-α expression, which is first evident at the mRNA level at 24 h after the chemotherapy. In this study, we show accumulation of IFN-β mRNA in the spleen and tumor nodule of such mice as early as 1 h after the chemotherapy followed by elevated production of IFN-β protein. IFN-β protein in turn was found to be important for the l-PAM-induced up-regulation of TNF-α expression, as neutralization of IFN-β inhibited the l-PAM-induced up-regulation of TNF-α mRNA expression in MOPC-315 tumor cells. In addition, l-PAM failed to up-regulate TNF-α expression in spleen cells from mice in which signaling by IFN-β is deficient. Studies into the mechanism through which l-PAM leads to rapid accumulation of IFN-β mRNA revealed that it requires de novo RNA synthesis, indicating that the regulation is at the transcriptional level. However, it did not require de novo protein synthesis, indicating that activation of pre-existing transcription factors is sufficient for IFN-β gene expression. The l-PAM-induced accumulation of IFN-β mRNA was mimicked with H2O2 and was prevented with the antioxidant N -acetyl-l-cysteine, indicating that reactive oxygen species are involved in the transcriptional regulation of l-PAM-induced IFN-β gene expression. Thus, the IFN-β gene is an early response gene that is activated in response to l-PAM via a pathway that involves reactive oxygen species, and IFN-β in turn plays an important role in l-PAM-induced TNF-α up-regulation.
机译:先前我们已经表明,向患有大面积皮下注射的小鼠施用低剂量的美法仑(1-苯丙氨酸芥末; 1-PAM)。 MOPC-315肿瘤导致TNF-α表达上调,这在化疗后24小时的mRNA水平上首先见到。在这项研究中,我们显示,最早在化疗后1小时,IFN-βmRNA在此类小鼠的脾脏和肿瘤结节中蓄积,然后产生更高的IFN-β蛋白。反过来,发现IFN-β蛋白对1-PAM诱导的TNF-α表达上调很重要,因为IFN-β的中和抑制了L-PAM诱导的TNF-αmRNA表达上调。 MOPC-315肿瘤细胞。此外,l-PAM无法上调小鼠脾脏细胞中TNF-α的表达,而小鼠的IFN-β信号不足。对l-PAM导致IFN-βmRNA快速积累的机制的研究表明,它需要从头合成RNA,这表明调节是在转录水平上进行的。但是,它不需要从头合成蛋白质,这表明现有转录因子的激活足以实现IFN-β基因表达。 L-PAM诱导的IFN-βmRNA积累被H2O2模拟,并被抗氧化剂N-乙酰基-1-半胱氨酸所阻止,这表明活性氧参与了L-PAM诱导的IFN-β的转录调控。基因表达。因此,IFN-β基因是一个早期反应基因,通过涉及活性氧的途径被激活以响应l-PAM,而IFN-β又在l-PAM诱导的TNF-α上起重要作用。 -规。

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