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PAC1磷酸酶是p53在信号传导凋亡和生长抑制过程中的一个转录靶点。

PAC1 phosphatase is a transcription target of p53 in signalling apoptosis and growth suppression.

作者信息

Yin Yuxin, Liu Yu-Xin, Jin Yan J, Hall Eric J, Barrett J Carl

机构信息

Department of Radiation Oncology, College of Physicians and Surgeons, Columbia University, 630 West 168th Street, New York, New York 10032, USA.

出版信息

Nature. 2003 Apr 3;422(6931):527-31. doi: 10.1038/nature01519.

Abstract

p53 has a role in many cellular processes through the transcriptional regulation of target genes. PAC1 (phosphatase of activated cells 1; also known as dual specificity phosphatase 2, DUSP2) is a dual threonine/tyrosine phosphatase that specifically dephosphorylates and inactivates mitogen-activated protein (MAP) kinases. Here we show that during apoptosis, p53 activates transcription of PAC1 by binding to a palindromic site in the PAC1 promoter. PAC1 transcription is induced in response to serum deprivation and oxidative stress, which results in p53-dependent apoptosis, but not in response to gamma-irradiation, which causes cell cycle arrest. Reduction of PAC1 transcription using small interfering RNA inhibits p53-mediated apoptosis, whereas overexpression of PAC1 increases susceptibility to apoptosis and suppresses tumour formation. Moreover, activation of p53 significantly inhibits MAP kinase activity. We conclude that, under specific stress conditions, p53 regulates transcription of PAC1 through a new p53-binding site, and that PAC1 is necessary and sufficient for p53-mediated apoptosis. Identification of a palindromic motif as a p53-binding site may reveal a novel mechanism whereby p53 regulates its target genes.

摘要

p53通过对靶基因的转录调控在许多细胞过程中发挥作用。PAC1(活化细胞磷酸酶1;也称为双特异性磷酸酶2,DUSP2)是一种双苏氨酸/酪氨酸磷酸酶,它能特异性地使丝裂原活化蛋白(MAP)激酶去磷酸化并使其失活。在此我们表明,在细胞凋亡过程中,p53通过与PAC1启动子中的一个回文位点结合来激活PAC1的转录。PAC1转录在血清剥夺和氧化应激反应中被诱导,这会导致p53依赖的细胞凋亡,但在γ射线照射导致细胞周期停滞的情况下则不会。使用小干扰RNA降低PAC1转录会抑制p53介导的细胞凋亡,而PAC1的过表达会增加对细胞凋亡的敏感性并抑制肿瘤形成。此外,p53的激活会显著抑制MAP激酶活性。我们得出结论,在特定应激条件下,p53通过一个新的p53结合位点调节PAC1的转录,并且PAC1对于p53介导的细胞凋亡是必要且充分的。将一个回文基序鉴定为p53结合位点可能揭示了一种p53调节其靶基因的新机制。

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