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CCNF相关E3连接酶的一种新型特征在乳腺癌中相互协作与对抗。

A Novel Signature of CCNF-Associated E3 Ligases Collaborate and Counter Each Other in Breast Cancer.

作者信息

Chang Shu-Chun, Hung Chin-Sheng, Zhang Bo-Xiang, Hsieh Tsung-Han, Hsu Wayne, Ding Jeak Ling

机构信息

The Ph.D. Program for Translational Medicine, College for Medical Science and Technology, Taipei Medical University, Taipei 110, Taiwan.

International Ph.D. Program for Translational Science, College of Medical Science and Technology, Taipei Medical University, Taipei 110, Taiwan.

出版信息

Cancers (Basel). 2021 Jun 8;13(12):2873. doi: 10.3390/cancers13122873.

Abstract

Breast cancer (BRCA) malignancy causes major fatalities amongst women worldwide. SCF (Skp1-cullin-F-box proteins) E3 ubiquitin ligases are the most well-known members of the ubiquitination-proteasome system (UPS), which promotes cancer initiation and progression. Recently, we demonstrated that FBXL8, a novel F-box protein (SCF) of SCF E3 ligase, accelerates BRCA advancement and metastasis. Since SCF is a key component of E3 ligases, we hypothesized that other SCF besides FBXL8 probably collaborate in regulating breast carcinogenesis. In this study, we retrospectively profiled the transcriptome of BRCA tissues and found a notable upregulation of four SCF E3 ligases (FBXL8, FBXO43, FBXO15, and CCNF) in the carcinoma tissues. Similar to FBXL8, the knockdown of FBXO43 reduced cancer cell viability and proliferation, suggesting its pro-tumorigenic role. The overexpression of CCNF inhibited cancer cell progression, indicating its anti-tumorigenic role. Unexpectedly, CCNF protein was markedly downregulated in BRCA tissues, although its mRNA level was high. We showed that both E3 ligases, FBXL8 and FZR1, pulled down CCNF. Double knockdown of FBXL8 and FZR1 caused CCNF accumulation. On the other hand, CCNF itself pulled down a tumorigenic factor, RRM2, and CCNF overexpression reduced RRM2. Altogether, we propose a signature network of E3 ligases that collaboratively modulates CCNF anti-cancer activity. There is potential to target BRCA through modulation of the partnership axes of (i) CCNF-FBXL8, (ii) CCNF-FZR1, and (iii) CCNF-RRM2, particularly, via CCNF overexpression and activation and FBXL8/FZR1 suppression.

摘要

乳腺癌是全球女性主要的致死病因。SCF(Skp1-遍在蛋白连接酶E3泛素连接酶)E3泛素连接酶是泛素化-蛋白酶体系统(UPS)中最知名的成员,该系统促进癌症的发生和发展。最近,我们证明了FBXL8,一种SCF E3连接酶的新型F-盒蛋白,可加速乳腺癌的进展和转移。由于SCF是E3连接酶的关键组成部分,我们推测除FBXL8外的其他SCF可能协同调节乳腺癌的发生。在本研究中,我们回顾性分析了乳腺癌组织的转录组,发现癌组织中四种SCF E3连接酶(FBXL8、FBXO43、FBXO15和CCNF)显著上调。与FBXL8相似,敲低FBXO43可降低癌细胞活力和增殖,表明其具有促肿瘤作用。CCNF的过表达抑制癌细胞进展,表明其具有抗肿瘤作用。出乎意料的是,尽管CCNF的mRNA水平很高,但其蛋白在乳腺癌组织中明显下调。我们发现E3连接酶FBXL8和FZR1都能下拉CCNF。同时敲低FBXL8和FZR1会导致CCNF积累。另一方面,CCNF本身能下拉一个致癌因子RRM2,CCNF的过表达会降低RRM2。总之,我们提出了一个E3连接酶的特征网络,它们协同调节CCNF的抗癌活性。通过调节(i)CCNF-FBXL8、(ii)CCNF-FZR1和(iii)CCNF-RRM2的伙伴关系轴,特别是通过CCNF的过表达和激活以及FBXL8/FZR1的抑制来靶向乳腺癌具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/747d/8228695/06cf5413d890/cancers-13-02873-g001a.jpg

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