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首页> 外文期刊>Oncogene >Zipper-interacting protein kinase is involved in regulation of ubiquitination of the androgen receptor, thereby contributing to dynamic transcription complex assembly
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Zipper-interacting protein kinase is involved in regulation of ubiquitination of the androgen receptor, thereby contributing to dynamic transcription complex assembly

机译:拉链相互作用蛋白激酶参与雄激素受体的泛素化调控,从而促进动态转录复合物的组装

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We have recently identified apoptosis-antagonizing transcription factor (AATF), tumor-susceptibility gene 101 (TSG101) and zipper-interacting protein kinase (ZIPK) as novel coactivators of the androgen receptor (AR). The mechanisms of coactivation remained obscure, however. Here we investigated the interplay and interdependence between these coactivators and the AR using the endogenous prostate specific antigen (PSA) gene as model for AR-target genes. Chromatin immunoprecipitation in combination with siRNA-mediated knockdown revealed that recruitment of AATF and ZIPK to the PSA enhancer was dependent on AR, whereas recruitment of TSG101 was dependent on AATF. Association of AR and its coactivators with the PSA enhancer or promoter occurred in cycles. Dissociation of AR-transcription complexes was due to degradation because inhibition of the proteasome system by MG132 caused accumulation of AR at enhancer/promoter elements. Moreover, inhibition of degradation strongly reduced transcription, indicating that continued and efficient transcription is based on initiation, degradation and reinitiation cycles. Interestingly, knockdown of ZIPK by siRNA had a similar effect as MG132, leading to reduced transcription but enhanced accumulation of AR at androgen-response elements. In addition, knockdown of ZIPK, as well as overexpression of a dominant-negative ZIPK mutant, diminished polyubiquitination of AR. Furthermore, ZIPK cooperated with the E3 ligase Mdm2 in AR-dependent transactivation, assembled into a single complex on chromatin and phosphorylated Mdm2 in vitro. These results suggest that ZIPK has a crucial role in regulation of ubiquitination and degradation of the AR, and hence promoter clearance and efficient transcription.
机译:我们最近确定凋亡拮抗转录因子(AATF),肿瘤易感基因101(TSG101)和与拉链相互作用的蛋白激酶(ZIPK)是雄激素受体(AR)的新型共激活因子。但是,共激活的机制仍然不清楚。在这里,我们使用内源性前列腺特异性抗原(PSA)基因作为AR目标基因的模型,研究了这些共激活因子和AR之间的相互作用和相互依赖性。染色质免疫沉淀与siRNA介导的敲除相结合显示,将AATF和ZIPK募集到PSA增强子依赖于AR,而TSG101募集则依赖于AATF。 AR及其共激活剂与PSA增强子或启动子的缔合发生在周期中。 AR转录复合物的解离是由于降解,因为MG132对蛋白酶体系统的抑制导致AR在增强子/启动子元件上的积累。此外,降解的抑制作用大大降低了转录,表明持续而有效的转录是基于起始,降解和重新起始循环的。有趣的是,通过siRNA抑制ZIPK具有与MG132类似的作用,从而导致转录降低,但增强AR在雄激素反应元件上的积累。此外,ZIPK的敲低以及显性负性ZIPK突变体的过表达减少了AR的多泛素化作用。此外,ZIPK与AR依赖的反式激活中的E3连接酶Mdm2合作,在体外在染色质和磷酸化的Mdm2上组装成单个复合物。这些结果表明,ZIPK在调节AR的泛素化和降解,从而启动子清除和有效转录中起着至关重要的作用。

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