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髓系分化过程中E盒DNA结合的分析揭示了包含Mad但不包含Max的复合物。

Analysis of E-box DNA binding during myeloid differentiation reveals complexes that contain Mad but not Max.

作者信息

Ryan K M, Birnie G D

机构信息

Beatson Institute for Cancer Research, Cancer Research Campaign Beatson Laboratories, Garscube Estate, Switchback Road, Bearsden, Glasgow, G61 1BD, Scotland, U.K.

出版信息

Biochem J. 1997 Jul 1;325 ( Pt 1)(Pt 1):79-85. doi: 10.1042/bj3250079.

Abstract

It has been shown that during myeloid differentiation the levels of mad1 mRNA are induced before the loss of c-Myc protein. This suggests that inactivation of the differentiation-blocking activity of c-Myc might not occur primarily through the loss of Myc protein, but through an increase in the levels of its antagonist, Mad1. To investigate this question we have analysed the levels of mad1 mRNA during differentiation of myeloid leukaemic HL60 cells. Although levels of mad1 mRNA were moderately increased after induction with phorbol ester, we also found that differentiation could be achieved with other inducers without any concomitant up-regulation of mad1 mRNA. In addition, analysis of E-box DNA binding revealed that, although Myc-Max complexes were lost rapidly after differentiation induction, formation of Mad1-containing complexes only occurred during the later stages of the differentiation programme. Further analysis of these Mad-containing complexes revealed that they were also unlikely to have the capacity to antagonize c-Myc function, as they did not contain Max. Therefore these data suggest that an increase in the levels of mad1 mRNA or the formation of a Mad-Max complex are unlikely to be essential or determining events for myeloid differentiation. In addition, the discovery of DNA-binding complexes that contain Mad1, but not Max, opens up this transcription factor network to include other Max-like proteins or proteins of an unrelated nature.

摘要

研究表明,在髓系分化过程中,mad1 mRNA水平在c-Myc蛋白缺失之前就被诱导升高。这表明,c-Myc的分化阻断活性失活可能并非主要通过Myc蛋白的缺失,而是通过其拮抗剂Mad1水平的升高。为了研究这个问题,我们分析了髓系白血病HL60细胞分化过程中mad1 mRNA的水平。虽然用佛波酯诱导后mad1 mRNA水平适度升高,但我们也发现,用其他诱导剂也能实现分化,而mad1 mRNA并没有随之上调。此外,对E-box DNA结合的分析表明,虽然分化诱导后Myc-Max复合物迅速消失,但含Mad1的复合物仅在分化程序的后期形成。对这些含Mad的复合物的进一步分析表明,它们也不太可能具有拮抗c-Myc功能的能力,因为它们不含Max。因此,这些数据表明,mad1 mRNA水平的升高或Mad-Max复合物的形成不太可能是髓系分化的必要或决定性事件。此外,发现含有Mad1但不含Max的DNA结合复合物,为这个转录因子网络引入了其他类似Max的蛋白或性质不相关的蛋白。

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