首页> 外文期刊>Molecular cancer research: MCR >TAp73 alpha increases p53 tumor suppressor activity in thyroid cancer cells via the inhibition of Mdm2-mediated degradation.
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TAp73 alpha increases p53 tumor suppressor activity in thyroid cancer cells via the inhibition of Mdm2-mediated degradation.

机译:TAp73 alpha通过抑制Mdm2介导的降解来增加甲状腺癌细胞中p53肿瘤抑制活性。

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摘要

p53 family proteins include p53 tumor suppressor, p63, and p73. Despite the high similarity in structure and function with p53, p63, and p73 function in tumor suppression is still controversial. Here, we show that TAp73alpha, a transcriptionally active p73 isoform, is able to synergize p53 tumor suppressor function in thyroid cancer cells. Indeed, depletion of p73 by small interfering RNA in thyroid cancer cells resulted in a reduced transcriptional activity of p53. Ectopic coexpression of both p53 and TAp73alpha in thyroid cancer cells resulted in increased transcription and tumor suppressor function compared with p53 or TAp73alpha alone, as well as in increased p53 protein levels. The enhancing effect of TAp73alpha on p53 activity is Mdm2 dependent because it is prevented by Mdm2 depletion by small interfering RNA. At least two mechanisms may explain the interference of TAp73alpha with p53 function. First, in thyroid cancer cells, TAp73alpha inhibits the effect of p53 on Mdm2 induction by antagonizing p53 at the Mdm2 promoter level. Second, a TAp73alpha mutant (G264W), which is devoid of DNA binding capability, is still able to increase p53 protein levels by competing with p53 for Mdm2 protein binding. Taken together, these results indicate that in thyroid cancer cells, TAp73alpha is able to increase p53 protein level and function by interfering with Mdm2-mediated p53 degradation. These results may be useful for designing gene therapies aimed at restoring a normal p53 function in thyroid cancer cells.
机译:p53家族蛋白包括p53肿瘤抑制剂,p63和p73。尽管在结构和功能上与p53,p63和p73在抑制肿瘤中的功能高度相似,但仍存在争议。在这里,我们表明,转录活性p73亚型TAp73alpha能够在甲状腺癌细胞中协同发挥p53抑癌功能。实际上,甲状腺癌细胞中的小干扰RNA消耗了p73,导致p53的转录活性降低。与单独的p53或TAp73alpha相比,甲状腺癌细胞中p53和TAp73alpha的异位共表达导致转录和肿瘤抑制功能的增强,以及p53蛋白水平的升高。 TAp73alpha对p53活性的增强作用是Mdm2依赖性的,因为它可以通过小分子干扰RNA消耗Mdm2来阻止。至少两种机制可以解释TAp73alpha对p53功能的干扰。首先,在甲状腺癌细胞中,TAp73alpha通过在Mdm2启动子水平拮抗p53来抑制p53对Mdm2诱导的作用。其次,没有DNA结合能力的TAp73alpha突变体(G264W)仍然能够通过与p53竞争Mdm2蛋白结合而提高p53蛋白水平。两者合计,这些结果表明,在甲状腺癌细胞中,TAp73alpha能够通过干扰Mdm2介导的p53降解而增加p53蛋白的水平和功能。这些结果可能对设计旨在恢复甲状腺癌细胞中正常p53功能的基因疗法有用。

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