在胆管癌细胞系QBC939中,通过RanBP2介导p27kip1的summoylation促进癌细胞生长

IF 2.946 Q3 Biochemistry, Genetics and Molecular Biology BMC Molecular Biology Pub Date : 2017-09-07 DOI:10.1186/s12867-017-0100-5
Jun Yang, Yan Liu, Bing Wang, Hongzhen Lan, Ying Liu, Fei Chen, Ju Zhang, Jian Luo
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引用次数: 13

摘要

胆管癌是一种致命的疾病,5年生存率差,对常规治疗反应差。先前我们发现p27kip1核质易位使胆管癌细胞QBC939具有增殖潜能,这一过程是由cm -1介导的。然而,在这一过程中未发现其他转录后调控,包括胆管癌中的sumoylation。在本研究中,我们探讨了sumoylation在p27kip1核质易位中的作用及其与QBC939细胞增殖的关系。首先,我们确定K73是p27kip1的sumo化位点。通过质粒flag-p27kip1、HA-RanBP2、GST-RanBP2和His-p27kip1和免疫沉淀实验,我们验证了p27kip1可以作为QBC939中RanBP2的sumoylation靶点。此外,我们证实了cm -1在促进p27kip1核质易位中的作用,并发现RanBP2的功能依赖于cm -1。然而,在p27kip1易位过程中,K73R突变的p27kip1不能被cm -1或RanBP2识别,这表明在p27kip1易位过程中,RanBP2和crm-1必须通过K73位点对p27kip1进行sumylation。表型上,在MTS和EdU实验中,RanBP2或crm-1的过表达都能部分恢复p27kip1过表达带来的抗增殖作用。我们首次鉴定并验证了p27kip1中的K73 summoylation位点,该位点在p27kip1核质易位过程中对RanBP2和cm -1至关重要。综上所述,靶向抑制p27kip1的sumo化可能是根除胆管癌发展和复发的潜在有效治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Sumoylation in p27kip1 via RanBP2 promotes cancer cell growth in cholangiocarcinoma cell line QBC939

Cholangiocarcinoma is one of the deadly disease with poor 5-year survival and poor response to conventional therapies. Previously, we found that p27kip1 nuclear-cytoplasmic translocation confers proliferation potential to cholangiocarcinoma cell line QBC939 and this process is mediated by crm-1. However, no other post-transcriptional regulation was found in this process including sumoylation in cholangiocarcinoma.

In this study, we explored the role of sumoylation in the nuclear-cytoplasmic translocation of p27kip1 and its involvement of QBC939 cells’ proliferation. First, we identified K73 as the sumoylation site in p27kip1. By utilizing plasmid flag-p27kip1, HA-RanBP2, GST-RanBP2 and His-p27kip1 and immunoprecipitation assay, we validated that p27kip1 can serve as the sumoylation target of RanBP2 in QBC939. Furthermore, we confirmed crm-1’s role in promoting nuclear-cytoplasmic translocation of p27kip1 and found that RanBP2’s function relies on crm-1. However, K73R mutated p27kip1 can’t be identified by crm-1 or RanBP2 in p27kip1 translocation process, suggesting sumoylation of p27kip1 via K73 site is necessary in this process by RanBP2 and crm-1. Phenotypically, the overexpression of either RanBP2 or crm-1 can partially rescue the anti-proliferative effect brought by p27kip1 overexpression in both the MTS and EdU assay. For the first time, we identified and validated the K73 sumoylation site in p27kip1, which is critical to RanBP2 and crm-1 in p27kip1 nuclear-cytoplasmic translocation process.

Taken together, targeted inhibition of sumoylation of p27kip1 may serve as a potentially potent therapeutic target in the eradication of cholangiocarcinoma development and relapses.

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来源期刊
BMC Molecular Biology
BMC Molecular Biology 生物-生化与分子生物学
CiteScore
4.80
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: BMC Molecular Biology is an open access journal publishing original peer-reviewed research articles in all aspects of DNA and RNA in a cellular context, encompassing investigations of chromatin, replication, recombination, mutation, repair, transcription, translation and RNA processing and function.
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