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支架蛋白FHL2促进MDM2介导的IER3降解以调控宫颈癌细胞的增殖。

Scaffold protein FHL2 facilitates MDM2-mediated degradation of IER3 to regulate proliferation of cervical cancer cells.

作者信息

Jin H, Lee K, Kim Y-H, Oh H K, Maeng Y-I, Kim T-H, Suh D-S, Bae J

机构信息

School of Pharmacy, Chung-Ang University, Seoul, Korea.

Department of Life Science, Chung-Ang University, Seoul, Korea.

出版信息

Oncogene. 2016 Sep 29;35(39):5106-18. doi: 10.1038/onc.2016.54. Epub 2016 Mar 14.

Abstract

The expression of immediate early response 3 (IER3), a protein with a short half-life, is rapidly induced by various cellular stimuli. We recently reported that IER3 induces the apoptosis of cervical cancer cells and that its expression is downregulated in patients with cervical cancer. However, the molecular mechanism involved in the rapid degradation of IER3 remains unknown. Here, we demonstrate that MDM2 is an E3 ligase that interacts with IER3 and promotes its ubiquitination, followed by proteasomal degradation. Polyubiquitination of the conserved lysine 60 of IER3 is essential for its degradation. In addition, four and a half LIM domains protein 2 (FHL2) binds to both IER3 and MDM2, allowing for efficient MDM2-mediated IER3 degradation by facilitating an association between MDM2 and IER3. Moreover, IER3 induces cell cycle arrest in cervical cancer cells and its activity is further enhanced in cells in which FHL2 or MDM2 was silenced, thereby preventing IER3 degradation. The E6 and E7 oncoproteins of human papilloma virus 18 regulated IER3 expression. FHL2 expression was significantly higher in the squamous epithelium of cervical carcinoma tissues than in non-cancerous cervical tissues, whereas cervical carcinoma expression of IER3 was downregulated in this region. Thus, we determined the molecular mechanism responsible for IER3 degradation, involving a ternary complex of IER3, MDM2 and FHL2, which may contribute to cervical tumor growth. Furthermore, we demonstrated that FHL2 serves as a scaffold for E3 ligase and its substrate during the ubiquitination reaction, a function that has not been previously reported for this protein.

摘要

即刻早期反应3(IER3)是一种半衰期较短的蛋白质,其表达可被多种细胞刺激迅速诱导。我们最近报道,IER3可诱导宫颈癌细胞凋亡,且其在宫颈癌患者中的表达下调。然而,IER3快速降解所涉及的分子机制仍不清楚。在此,我们证明MDM2是一种E3连接酶,它与IER3相互作用并促进其泛素化,随后经蛋白酶体降解。IER3保守赖氨酸60的多聚泛素化对其降解至关重要。此外,四半LIM结构域蛋白2(FHL2)与IER3和MDM2均结合,通过促进MDM2与IER3之间的结合,实现MDM2介导的IER3高效降解。此外,IER3可诱导宫颈癌细胞的细胞周期停滞,在FHL2或MDM2沉默的细胞中其活性进一步增强,从而防止IER3降解。人乳头瘤病毒18的E6和E7癌蛋白调节IER3的表达。FHL2在宫颈癌组织的鳞状上皮中的表达明显高于非癌性宫颈组织,而该区域IER3在宫颈癌中的表达下调。因此,我们确定了IER3降解的分子机制,涉及IER3、MDM2和FHL2的三元复合物,这可能有助于宫颈肿瘤的生长。此外,我们证明FHL2在泛素化反应中作为E3连接酶及其底物的支架,这一功能此前尚未见该蛋白的相关报道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5036/5399145/20fd27e8f42f/onc201654f1.jpg

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