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TP53INP1是一种新型的p73靶基因,它通过调节p73转录活性来诱导细胞周期停滞和细胞死亡。

TP53INP1 is a novel p73 target gene that induces cell cycle arrest and cell death by modulating p73 transcriptional activity.

作者信息

Tomasini Richard, Seux Mylène, Nowak Jonathan, Bontemps Caroline, Carrier Alice, Dagorn Jean-Charles, Pébusque Marie-Josèphe, Iovanna Juan L, Dusetti Nelson J

机构信息

INSERM U624, Stress Cellulaire, IFR 137-Institut de Cancérologie et Immunologie de Marseille, Université de la Méditerranée, Marseille, France.

出版信息

Oncogene. 2005 Dec 8;24(55):8093-104. doi: 10.1038/sj.onc.1208951.

Abstract

TP53INP1 is an alternatively spliced gene encoding two nuclear protein isoforms (TP53INP1alpha and TP53INP1beta), whose transcription is activated by p53. When overexpressed, both isoforms induce cell cycle arrest in G1 and enhance p53-mediated apoptosis. TP53INP1s also interact with the p53 gene and regulate p53 transcriptional activity. We report here that TP53INP1 expression is induced during experimental acute pancreatitis in p53-/- mice and in cisplatin-treated p53-/- mouse embryo fibroblasts (MEFs). We demonstrate that ectopic expression of p73, a p53 homologue, leads to TP53INP1 induction in p53-deficient cells. In turn, TP53INP1s alters the transactivation capacity of p73 on several p53-target genes, including TP53INP1 itself, demonstrating a functional association between p73 and TP53INP1s. Also, when overexpressed in p53-deficient cells, TP53INP1s inhibit cell growth and promote cell death as assessed by cell cycle analysis and colony formation assays. Finally, we show that TP53INP1s potentiate the capacity of p73 to inhibit cell growth, that effect being prevented when the p53 mutant R175H is expressed or when p73 expression is blocked by a siRNA. These results suggest that TP53INP1s are functionally associated with p73 to regulate cell cycle progression and apoptosis, independently from p53.

摘要

TP53INP1是一个可变剪接基因,编码两种核蛋白异构体(TP53INP1α和TP53INP1β),其转录由p53激活。当过度表达时,这两种异构体均会诱导G1期细胞周期停滞并增强p53介导的细胞凋亡。TP53INP1还与p53基因相互作用并调节p53的转录活性。我们在此报告,在p53基因敲除小鼠的实验性急性胰腺炎期间以及顺铂处理的p53基因敲除小鼠胚胎成纤维细胞(MEF)中,TP53INP1的表达会被诱导。我们证明,p53同源物p73的异位表达会导致p53缺陷细胞中TP53INP1的诱导。反过来,TP53INP1会改变p73对几个p53靶基因(包括TP53INP1自身)的反式激活能力,证明了p73与TP53INP1之间的功能关联。此外,当在p53缺陷细胞中过度表达时,通过细胞周期分析和集落形成试验评估,TP53INP1会抑制细胞生长并促进细胞死亡。最后,我们表明TP53INP1会增强p73抑制细胞生长的能力,当表达p53突变体R175H或用小干扰RNA阻断p73表达时,这种作用会被阻止。这些结果表明,TP53INP1在功能上与p73相关联,以调节细胞周期进程和细胞凋亡,且独立于p53。

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