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mRNA 稳定因子 HuR 蛋白可被 β-TrCP 蛋白靶向降解,以响应糖酵解抑制。

The mRNA-stabilizing factor HuR protein is targeted by β-TrCP protein for degradation in response to glycolysis inhibition.

机构信息

Division of Medicinal Chemistry, College of Pharmacy and Comprehensive Cancer Center, The Ohio State University, Columbus, Ohio 43221, USA.

出版信息

J Biol Chem. 2012 Dec 21;287(52):43639-50. doi: 10.1074/jbc.M112.393678. Epub 2012 Oct 31.

Abstract

The mRNA-stabilizing protein HuR acts a stress response protein whose function and/or protein stability are modulated by diverse stress stimuli through posttranslational modifications. Here, we report a novel mechanism by which metabolic stress facilitates proteasomal degradation of HuR in cancer cells. In response to the glucose transporter inhibitor CG-5, HuR translocates to the cytoplasm, where it is targeted by the ubiquitin E3 ligase β-TrCP1 for degradation. The cytoplasmic localization of HuR is facilitated by PKCα-mediated phosphorylation at Ser-318 as the Ser-318 → alanine substitution abolishes the ability of the resulting HuR to bind PKCα and to undergo nuclear export. The mechanistic link between β-TrCP1 and HuR degradation was supported by the ability of ectopically expressed β-TrCP1 to mimic CG-5 to promote HuR degradation and by the protective effect of dominant negative inhibition of β-TrCP1 on HuR ubiquitination and degradation. Substrate targeting of HuR by β-TrCP1 was further verified by coimmunoprecipitation and in vitro GST pull-down assays and by the identification of a β-TrCP1 recognition site. Although HuR does not contain a DSG destruction motif, we obtained evidence that β-TrCP1 recognizes an unconventional motif, (296)EEAMAIAS(304), in the RNA recognition motif 3. Furthermore, mutational analysis indicates that IKKα-dependent phosphorylation at Ser-304 is crucial to the binding of HuR to β-TrCP1. Mechanistically, this HuR degradation pathway differs from that reported for heat shock and hypoxia, which underlies the complexity in the regulation of HuR turnover under different stress stimuli. The ability of glycolysis inhibitors to target the expression of oncogenic proteins through HuR degradation might foster novel strategies for cancer therapy.

摘要

mRNA 稳定蛋白 HuR 是一种应激反应蛋白,其功能和/或蛋白稳定性可通过翻译后修饰被多种应激刺激所调节。在这里,我们报道了一种新的机制,即代谢应激通过泛素 E3 连接酶β-TrCP1 促进癌细胞中 HuR 的蛋白酶体降解。在葡萄糖转运体抑制剂 CG-5 的作用下,HuR 易位到细胞质中,在细胞质中,它被泛素 E3 连接酶β-TrCP1 靶向降解。PKCα 介导的 Ser-318 磷酸化促进 HuR 的细胞质定位,因为 Ser-318→丙氨酸取代会使产生的 HuR 丧失与 PKCα 结合和进行核输出的能力。β-TrCP1 与 HuR 降解之间的机制联系得到了支持,即过表达的β-TrCP1 能够模拟 CG-5 促进 HuR 降解,以及β-TrCP1 的显性负抑制对 HuR 泛素化和降解的保护作用。β-TrCP1 对 HuR 的底物靶向作用通过共免疫沉淀和体外 GST 下拉实验以及鉴定β-TrCP1 识别位点进一步得到证实。尽管 HuR 不含 DSG 破坏基序,但我们获得了证据表明,β-TrCP1 识别 RNA 识别基序 3 中的非典型基序 (296)EEAMAIAS(304)。此外,突变分析表明,IKKα 依赖性 Ser-304 磷酸化对于 HuR 与β-TrCP1 的结合至关重要。从机制上讲,这种 HuR 降解途径与热休克和缺氧所报道的途径不同,这表明在不同应激刺激下 HuR 周转的调节具有复杂性。糖酵解抑制剂通过 HuR 降解靶向致癌蛋白的表达,可能为癌症治疗提供新的策略。

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