Li Xu, Lee Yung-Kang, Jeng Jen-Chong, Yen Yun, Schultz David C, Shih Hsiu-Ming, Ann David K
Department of Molecular and Clinical Pharmacology, City of Hope, Duarte, California 91010, USA.
J Biol Chem. 2007 Dec 14;282(50):36177-89. doi: 10.1074/jbc.M706912200. Epub 2007 Oct 17.
As a multifunctional protein, KRAB domain-associated protein 1 (KAP1) is reportedly subjected to multiple protein posttranslational modifications, including phosphorylation and sumoylation. However, gaps exist in our knowledge of how KAP1 phosphorylation cross-talks with KAP1 sumoylation and what the biological consequence is. Here, we show that doxorubicin (Dox) treatment induces KAP1 phosphorylation at Ser-824 via an ataxia telangiectasia mutated (ATM)-dependent manner, correlating with the transcriptional de-repression of p21WAF1/CIP1 and Gadd45alpha. A S824A substitution of KAP1, which ablates the ATM-induced phosphorylation, results in an increase of KAP1 sumoylation and repression of p21 transcription in Dox-treated cells. By contrast, a S824D mutation of KAP1, which mimics constitutive phosphorylation of KAP1, leads to a decrease of KAP1 sumoylation and stimulation of p21 transcription before the exposure of Dox. We further provide evidence that SENP1 deSUMOylase is involved in activating basal, but not Dox-induced, KAP1 Ser-824 phosphorylation, rendering a stimulation of p21 and Gadd45alpha transcription. Moreover, KAP1 and differential sumoylation of KAP1 were also demonstrated to fine-tune the transcription of three additional KAP1-targeted genes, including Bax, Puma, and Noxa. Taken together, our results suggest a novel role for ATM that selectively stimulates KAP1 Ser-824 phosphorylation to repress its sumoylation, leading to the de-repression of expression of a subset of genes involved in promoting cell cycle control and apoptosis in response to genotoxic stresses.
作为一种多功能蛋白,据报道,KRAB结构域相关蛋白1(KAP1)会经历多种蛋白质翻译后修饰,包括磷酸化和SUMO化。然而,我们对于KAP1磷酸化如何与KAP1 SUMO化相互作用以及其生物学后果仍知之甚少。在此,我们表明阿霉素(Dox)处理通过一种依赖共济失调毛细血管扩张症突变蛋白(ATM)的方式诱导KAP1在Ser-824位点发生磷酸化,这与p21WAF1/CIP1和Gadd45α的转录去抑制相关。KAP1的S824A替代消除了ATM诱导的磷酸化,导致Dox处理的细胞中KAP1 SUMO化增加以及p21转录受到抑制。相比之下,KAP1的S824D突变模拟了KAP1的组成型磷酸化,导致在Dox处理前KAP1 SUMO化减少以及p21转录受到刺激。我们进一步提供证据表明,SENP1去SUMO化酶参与激活基础状态下而非Dox诱导的KAP1 Ser-824磷酸化,从而刺激p21和Gadd45α转录。此外,还证明了KAP1以及KAP1的不同SUMO化状态可微调另外三个KAP1靶向基因(包括Bax、Puma和Noxa)的转录。综上所述,我们的结果表明ATM具有一种新作用,即选择性刺激KAP1 Ser-824磷酸化以抑制其SUMO化,从而导致参与响应基因毒性应激促进细胞周期调控和凋亡的一组基因的表达去抑制。