首页> 外文期刊>Anticancer Research: International Journal of Cancer Research and Treatment >Mdm2 ligase dead mutants did not act in a dominant negative manner to re-activate p53, but promoted tumor cell growth.
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Mdm2 ligase dead mutants did not act in a dominant negative manner to re-activate p53, but promoted tumor cell growth.

机译:Mdm2连接酶死亡突变体并未以显性负性方式重新激活p53,但促进了肿瘤细胞的生长。

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摘要

Mdm2 (murine double minute 2) is an oncogene, first identified in BALB/c 3T3 cells. Over-expression and gene amplification of Mdm2 were found in a variety of human cancers. Recently, Mdm2 was found to be an E3 ubiquitin ligase that promotes degradation of p53, which contributes significantly to its oncogenic activity. In this study, we test a hypothesis that Mdm2 ligase dead mutants, which retained p53 binding activity but lost degradation activity, would act in a dominant negative manner to re-activate p53, especially upon stressed conditions. Five Mdm2 constructs expressing wild-type and E3 ligase-dead Mdm2 proteins were generated in a Tet-Off system and transfected into MCF-7 breast cancer cells (p53+/+ with Mdm2 overexpression) as well as MCF10A immortalized breast cells (p53+/+ without Mdm2 overexpression) as a normal control. We found that expression of Mdm2 mutants were tightly regulated by doxycycline. Withdrawal of doxycycline in culture medium triggered overexpression of Mdm2 mutants. However, expression of ligase dead mutants in MCF7 and MCF10A cells did not reactivate p53 as shown by a luciferase-reporter transcription assay and Western blot of p53 and its downstream target p21 under either unstressed condition or after exposure to DNA damaging agents. Biologically, over-expression of Mdm2 mutants had no effect on p53-induced apoptosis following DNA damage. Interestingly, over-expression of Mdm2 mutants promoted growth of MCF7 tumor cells probably via a p53-independent mechanism. Over-expression of Mdm2 mutants, however, had no effect on the growth of normal MCF10A cells and did not cause their transformation. Thus, ligase dead mutants of Mdm2 did not act in a dominant negative manner to reactivate p53 and they are not oncogenes in MCF10A cells.
机译:Mdm2(鼠类第2分钟)是一种癌基因,最早在BALB / c 3T3细胞中发现。在多种人类癌症中发现了Mdm2的过度表达和基因扩增。最近,发现Mdm2是一种E3泛素连接酶,可促进p53降解,这对其致癌活性有重要贡献。在这项研究中,我们测试了一个假设,即保留p53结合活性但丧失降解活性的Mdm2连接酶死亡突变体将以显性负性方式重新激活p53,特别是在压力条件下。在Tet-Off系统中生成了五个表达野生型和E3连接酶死亡的Mdm2蛋白的Mdm2构建体,并将其转染到MCF-7乳腺癌细胞(p53 + / +,Mdm2过表达)以及MCF10A永生化的乳腺癌细胞(p53 + / +)中没有Mdm2过度表达)作为正常对照。我们发现Mdm2突变体的表达受到强力霉素的严格调节。在培养基中撤除强力霉素会触发Mdm2突变体的过表达。然而,如荧光素酶报道基因转录试验和p53及其下游靶标p21的Western印迹所示,在无压力条件下或暴露于DNA损伤剂后,MCF7和MCF10A细胞中连接酶死亡突变体的表达均未激活p53。从生物学上讲,Mdm2突变体的过表达对DNA损伤后p53诱导的细胞凋亡没有影响。有趣的是,Mdm2突变体的过度表达可能通过独立于p53的机制促进了MCF7肿瘤细胞的生长。但是,Mdm2突变体的过表达对正常MCF10A细胞的生长没有影响,也不会引起其转化。因此,Mdm2的连接酶死亡突变体没有以显性负性方式重新激活p53,并且它们不是MCF10A细胞中的癌基因。

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