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SP1-induced HOXD-AS1 promotes malignant progression of cholangiocarcinoma by regulating miR-520c-3p/MYCN

机译:SP1诱导的HOXD-AS1通过调节miR-520c-3p / mycn来促进胆管癌的恶性进展

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摘要

The purpose of this article is to explore the function and mechanism of HOXD-AS1 in cholangiocarcinoma. TCGA, StarBase and JASPAR were applied to predict the differential expression and molecular mechanism. The qRT-PCR was conducted to detect molecular expression. The effect of HOXD-AS1 on tumor proliferation, metastasis and stemness was measured through corresponding experiments. ChIP, luciferase reporter and RIP assays were implemented to explore the regulatory mechanism of HOXD-AS1 in CCA. In this study, HOXD-AS1 expression was significantly upregulated in CCA tissues and cells compared with control groups, respectively. Increased HOXD-AS1 was markedly correlated with lymph node invasion, advanced TNM stage and poor survival of CCA patients. Moreover, HOXD-AS1 was confirmed to be an unfavorable independent prognostic factor for CCA patients. Functionally, gain- and loss-of-function experiments demonstrated that HOXD-AS1 facilitated tumor proliferation, migration, invasion, EMT, stemness and drug resistance and . For the mechanism, transcription factor SP1-induced HOXD-AS1 upregulated oncogene MYCN through competitively binding to miR-520c-3p. Furthermore, HOXD-AS1-induced malignant phenotypes were rescued by interfering miR-520c-3p and MYCN, respectively. SP1/HOXD-AS1/miR-520c-3p/MYCN plays a vital role in initiation and progression of CCA, and HOXD-AS1 is expected to be an efficient biomarker and therapeutic target.
机译:本文的目的是探讨Hoxd-AS1在胆管癌中的功能和机制。施用TCGA,Starbase和Jaspar以预测差异表达和分子机制。进行QRT-PCR以检测分子表达。通过相应的实验测量HOXD-AS1对肿瘤增殖,转移和茎的影响。实施芯片,荧光素酶报告和RIP测定以探讨CCA中HOXD-AS1的调节机制。在该研究中,与对照组分别在CCA组织和细胞中显着上调Hoxd-AS1表达。 Hoxd-AS1增加与淋巴结侵袭,晚期TNM阶段和CCA患者的差异显着相关。此外,证实Hoxd-AS1是CCA患者的不利独立预后因素。在功能上,函数和丧失损失实验表明,Hoxd-AS1促进肿瘤增殖,迁移,侵袭,EMT,茎和耐药性和耐药性。对于该机制,转录因子SP1诱导的HOXD-AS1通过竞争性结合miR-520c-3p来上调癌基因Mycn。此外,通过干扰miR-520c-3p和mycn来拯救Hoxd-AS1诱导的恶性表型。 SP1 / Hoxd-AS1 / miR-520C-3P / MyCN在CCA的开始和进展中起着至关重要的作用,并且Hoxd-AS1预计将是一种有效的生物标志物和治疗目标。

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