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Endogenous Human MDM2-C Is Highly Expressed in Human Cancers and Functions as a p53-Independent Growth Activator

机译:内源性人类MDM2-C在人类癌症中高度表达并作为独立于p53的生长激活剂发挥作用

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摘要

Human cancers over-expressing mdm2, through a T to G variation at a single nucleotide polymorphism at position 309 (mdm2 SNP309), have functionally inactivated p53 that is not effectively degraded. They also have high expression of the alternatively spliced transcript, mdm2-C. Alternatively spliced mdm2 transcripts are expressed in many forms of human cancer and when they are exogenously expressed they transform human cells. However no study to date has detected endogenous MDM2 protein isoforms. Studies with exogenous expression of splice variants have been carried out with mdm2-A and mdm2-B, but the mdm2-C isoform has remained virtually unexplored. We addressed the cellular influence of exogenously expressed MDM2-C, and asked if endogenous MDM2-C protein was present in human cancers. To detect endogenous MDM2-C protein, we created a human MDM2-C antibody to the splice junction epitope of exons four and ten (MDM2 C410) and validated the antibody with in vitro translated full length MDM2 compared to MDM2-C. Interestingly, we discovered that MDM2-C co-migrates with MDM2-FL at approximately 98 kDa. Using the validated C410 antibody, we detected high expression of endogenous MDM2-C in human cancer cell lines and human cancer tissues. In the estrogen receptor positive (ER+) mdm2 G/G SNP309 breast cancer cell line, T47D, we observed an increase in endogenous MDM2-C protein with estrogen treatment. MDM2-C localized to the nucleus and the cytoplasm. We examined the biological activity of MDM2-C by exogenously expressing the protein and observed that MDM2-C did not efficiently target p53 for degradation or reduce p53 transcriptional activity. Exogenous expression of MDM2-C in p53-null human cancer cells increased colony formation, indicating p53-independent tumorigenic properties. Our data indicate a role for MDM2-C that does not require the inhibition of p53 for increasing cancer cell proliferation and survival.
机译:通过在309位的单核苷酸多态性(mdm2 SNP309)的T到G变异来过表达mdm2的人类癌症,其功能性p53不能有效降解。它们还具有选择性剪接的转录本mdm2-C的高表达。剪接的mdm2转录本可以在多种形式的人类癌症中表达,当它们外源表达时,它们可以转化人类细胞。然而,迄今为止尚无研究检测到内源性MDM2蛋白同工型。已经使用mdm2-A和mdm2-B进行了剪接变体外源表达的研究,但是mdm2-C异构体实际上尚未得到探索。我们研究了外源表达的MDM2-C的细胞影响,并询问人类癌症中是否存在内源性MDM2-C蛋白。为了检测内源性MDM2-C蛋白,我们创建了针对第4和第10外显子的剪接点表位的人MDM2-C抗体(MDM2 C410),并与MDM2-C进行了体外翻译的全长MDM2验证了该抗体。有趣的是,我们发现MDM2-C与MDM2-FL在大约98 kDa处共迁移。使用经过验证的C410抗体,我们在人类癌细胞系和人类癌症组织中检测到内源性MDM2-C的高表达。在雌激素受体阳性(ER +)mdm2 G / G SNP309乳腺癌细胞系T47D中,我们观察到雌激素处理可增加内源性MDM2-C蛋白。 MDM2-C定位于细胞核和细胞质。我们通过外源表达蛋白质检查了MDM2-C的生物学活性,并观察到MDM2-C不能有效地靶向p53降解或降低p53转录活性。 MDM2-C在无p53的人类癌细胞中的外源表达增加了菌落的形成,表明了不依赖p53的致癌特性。我们的数据表明,MDM2-C的作用不需要抑制p53即可增加癌细胞的增殖和存活。

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