Kang Jae-Hyeok, Choi Mi-Young, Cui Yan-Hong, Kaushik Neha, Uddin Nizam, Yoo Ki-Chun, Kim Min-Jung, Lee Su-Jae
Department of Life Science, Research Institute for Natural Sciences, Hanyang University, Seoul, Korea.
Centre of Excellence in Molecular Biology (CEMB), University of The Panjab, Lahore, Pakistan.
Oncotarget. 2017 Sep 15;8(47):83100-83113. doi: 10.18632/oncotarget.20912. eCollection 2017 Oct 10.
Advanced or progressive cancers share common traits such as altered transcriptional modulation, genetic modification, and abnormal post-translational regulation. These processes influence protein stability and cellular activity. Intercellular adhesion molecule-1 (ICAM-1) is involved in the malignant progression of various human cancers, including breast, liver, renal, and pancreatic cancers, but protein stability has not been deal with in metastatic breast cancer. Additionally, the relevance of the stability maintenance of ICAM-1 protein remains obscure. Here, we identified a novel interaction of E3 ligase FBXO4 that is specifically presented to ICAM-1. To understand how FBXO4 modulates ICAM-1 stability, we investigated ICAM-1-overexpressing or knockdown metastatic/non-metastatic breast cancers. ICAM-1 was found to influence tumor progression and metastasis, whereas FBXO4 regulated aggressive tumorigenic conditions. These results demonstrate that FBXO4 is a major regulator of ICAM-1 stability and that alterations in the stability of ICAM-1 can influence therapeutic outcome in metastatic cancer.
晚期或进展期癌症具有共同特征,如转录调控改变、基因修饰和异常的翻译后调控。这些过程影响蛋白质稳定性和细胞活性。细胞间黏附分子-1(ICAM-1)参与包括乳腺癌、肝癌、肾癌和胰腺癌在内的多种人类癌症的恶性进展,但转移性乳腺癌中尚未涉及蛋白质稳定性问题。此外,ICAM-1蛋白稳定性维持的相关性仍不明确。在此,我们鉴定了一种与ICAM-1特异性结合的新型E3连接酶FBXO4相互作用。为了解FBXO4如何调节ICAM-1稳定性,我们研究了过表达或敲低ICAM-1的转移性/非转移性乳腺癌。发现ICAM-1影响肿瘤进展和转移,而FBXO4调节侵袭性致瘤条件。这些结果表明,FBXO4是ICAM-1稳定性的主要调节因子,ICAM-1稳定性的改变会影响转移性癌症的治疗结果。