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α干扰素和γ干扰素激活基因转录的不同机制。

Different mechanisms for activation of gene transcription by interferons alpha and gamma.

作者信息

Faltynek C R, McCandless S, Chebath J, Baglioni C

出版信息

Virology. 1985 Jul 15;144(1):173-80. doi: 10.1016/0042-6822(85)90315-0.

Abstract

Treatment of HeLa cells with either recombinant interferon (rIFN) alpha 2 or gamma elevated the level of mRNA for 2',5'-oligo(A) synthetase and for a 56,000 Mr protein. Cycloheximide prevented the induction of these mRNAs when rIFN-gamma, but not rIFN-alpha 2, was the inducer. This suggested that these rIFNs activate gene transcription by different mechanisms. The level of induced mRNAs reached a maximum 8 or 12 hr, respectively, after addition of rIFN-alpha 2 or rIFN-gamma, and then slowly decreased. Inhibition of protein synthesis by cycloheximide 8 hr after the addition of rIFN-alpha 2 prevented the decline in mRNA for 2',5'-oligo(A) synthetase. Addition of an inhibitor of RNA synthesis or removal of IFN from the medium accelerated this decline. Although the IFN-alpha receptors were down-regulated in HeLa cells treated for 25 hr with rIFN-alpha 2, these cells responded to a second rIFN-alpha 2 treatment with a further increase in inducible mRNAs. These results suggest that the level of these mRNAs is regulated by two opposing processes. As long as IFN is present in the medium, it continues to activate transcription of inducible mRNAs. However, after 8-12 hr of treatment, an opposing process, which is inhibited by cycloheximide, causes a decline in the level of these mRNAs.

摘要

用重组干扰素(rIFN)α2 或γ处理 HeLa 细胞,可提高 2',5'-寡聚腺苷酸合成酶及一种 56,000 Mr 蛋白质的 mRNA 水平。当 rIFN-γ(而非 rIFN-α2)作为诱导剂时,放线菌酮可阻止这些 mRNA 的诱导产生。这表明这些 rIFN 通过不同机制激活基因转录。分别在添加 rIFN-α2 或 rIFN-γ 后 8 小时或 12 小时,诱导的 mRNA 水平达到最大值,随后缓慢下降。在添加 rIFN-α2 后 8 小时用放线菌酮抑制蛋白质合成,可阻止 2',5'-寡聚腺苷酸合成酶 mRNA 的下降。添加 RNA 合成抑制剂或从培养基中去除 IFN 可加速这种下降。尽管用 rIFN-α2 处理 25 小时的 HeLa 细胞中 IFN-α 受体下调,但这些细胞对第二次 rIFN-α2 处理仍有反应,可诱导的 mRNA 进一步增加。这些结果表明,这些 mRNA 的水平受两个相反过程的调节。只要培养基中存在 IFN,它就会持续激活可诱导 mRNA 的转录。然而,处理 8 - 12 小时后,一个受放线菌酮抑制的相反过程会导致这些 mRNA 水平下降。

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