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首页> 外文期刊>Journal of experimental & clinical cancer research : >Long non-coding RNA UBE2CP3 enhances HCC cell secretion of VEGFA and promotes angiogenesis by activating ERK1/2/HIF-1α/VEGFA signalling in hepatocellular carcinoma
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Long non-coding RNA UBE2CP3 enhances HCC cell secretion of VEGFA and promotes angiogenesis by activating ERK1/2/HIF-1α/VEGFA signalling in hepatocellular carcinoma

机译:长非编码RNA UBE2CP3通过激活肝细胞癌中的ERK1 / 2 /HIF-1α/ VEGFA信号传导增强HCC细胞分泌VEGFA并促进血管生成

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摘要

Angiogenesis is considered as an important process in the development of malignancies and is associated with cancer progression and metastasis. Hepatocellular carcinoma (HCC) is the most common primary tumor of the liver and is recognized as a typical angiogenic tumor. Thus, it is of great importance to study the underlying mechanism of angiogenesis in HCC. The long non-coding RNA (lncRNA) ubiquitin conjugating enzyme E2C pseudogene 3 (UBE2CP3) has been reported as an oncogene that promotes tumor metastasis in HCC. However, the role and underlying mechanisms of UBE2CP3 in HCC angiogenesis are still unclear. We measured the expression levels of UBE2CP3 by in situ hybridization (ISH) and quantitative real-time polymerase chain reaction (qRT-PCR) in HCC patient samples. We also concomitantly used CD31/PAS double-staining to measure endothelial vessel (EV) density and used qRT-PCR to measure the CD31 mRNA level. HepG2 and SMMC-7721 cells were transfected with Lv-UBE2CP3 or Sh-UBE2CP3 virus to obtain stably over-expressing or knocking-down UBE2CP3 cell lines. The indirect effects of UBE2CP3 on ECs were studied by establishing a co-culture system using Transwell chambers with a 0.4-μm pore size. HCC cells and ECs in the co-culture system were separated, but the cytokines and growth factors were able to communicate with each other. Following exposed to HCC cells, ECs were collected for functional studies. Finally, we studied the function of UBE2CP3 in vivo by chick embryo chorioallantoic membrane (CAM) angiogenesis assays and nude mouse tumorigenicity assays. In this study, we found that UBE2CP3 expression was higher in HCC tissues than in para-tumor tissues and was up-regulated in tissues with high EV density. Functionally, we found that in the co-culture systems, HCC cells overexpressing UBE2CP3 promoted HUVEC proliferation, migration and tube formation via the activation of ERK/HIF-1α/p70S6K/VEGFA signalling, increasing the level of VEGFA in HCC cell supernatant. In addition, the opposite results appeared when the expression of UBE2CP3 in HCC cells was knocked down. Consistent with these results, CAM angiogenesis assays and nude mouse tumorigenicity assays showed that UBE2CP3 expression up-regulated EV density in vivo. Our study suggests that UBE2CP3 can enhance the interaction between HCC tumor cells and HUVECs and promote HCC tumorigenicity by facilitating angiogenesis.
机译:血管生成被认为是恶性肿瘤发展的重要过程,并且与癌症的进展和转移有关。肝细胞癌(HCC)是最常见的肝原发性肿瘤,被认为是典型的血管生成性肿瘤。因此,研究肝癌血管新生的潜在机制具有重要意义。据报道,长的非编码RNA(lncRNA)泛素结合酶E2C假基因3(UBE2CP3)是促进肝癌肿瘤转移的致癌基因。然而,UBE2CP3在肝癌血管生成中的作用和潜在机制仍不清楚。我们通过原位杂交(ISH)和定量实时聚合酶链反应(qRT-PCR)在HCC患者样品中测量了UBE2CP3的表达水平。我们还同时使用CD31 / PAS双重染色来测量内皮血管(EV)密度,并使用qRT-PCR来测量CD31 mRNA水平。用Lv-UBE2CP3或Sh-UBE2CP3病毒转染HepG2和SMMC-7721细胞,以获得稳定的过表达或敲除的UBE2CP3细胞系。通过使用孔径为0.4μm的Transwell室建立共培养系统,研究了UBE2CP3对EC的间接作用。共培养系统中的HCC细胞和EC分离了,但是细胞因子和生长因子却能够相互通讯。暴露于HCC细胞后,收集EC进行功能研究。最后,我们通过鸡胚绒膜尿囊膜(CAM)血管生成测定和裸鼠致瘤性测定研究了UBE2CP3在体内的功能。在这项研究中,我们发现UBE2CP3在HCC组织中的表达高于癌旁组织,并且在高EV密度的组织中被上调。在功能上,我们发现在共培养系统中,过表达UBE2CP3的HCC细胞通过激活ERK /HIF-1α/ p70S6K / VEGFA信号传导来促进HUVEC增殖,迁移和管形成,从而增加了HCC细胞上清液中VEGFA的水平。此外,当敲除HCC细胞中UBE2CP3的表达时,出现相反的结果。与这些结果一致,CAM血管生成测定和裸鼠致瘤性测定表明,UBE2CP3表达上调了体内的EV密度。我们的研究表明,UBE2CP3可以通过促进血管生成来增强HCC肿瘤细胞与HUVEC之间的相互作用并促进HCC的致癌性。

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