睾丸特异性基因抗原10在乳腺癌中的功能表达及影响:体外和计算机联合分析

M. Asgharzadeh, M. M. Pourseif, J. Barar, M. Eskandani, Mojtaba Jafari Niya, M. Mashayekhi, Y. Omidi
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引用次数: 11

摘要

简介:睾丸特异性基因抗原10 (TSGA10)是一个鲜为人知的基因,它参与了不同癌症的模糊生物学途径。在此,我们研究了缺氧条件下不同浓度葡萄糖对TSGA10表达的影响及其与缺氧诱导因子1 (HIF-1)的相互作用。方法:将乳腺癌MDA-MB-231和MCF-7细胞在不同浓度的葡萄糖(5.5、11.0和25.0 mM)中培养24、48和72 h,采用Western blotting和抓痕法检测HIF-1α的表达和细胞迁移情况。采用qPCR方法分析TSGA10的表达。利用MODELLER v9.17和Swiss-PDB viewer v4.1.0/UCSF Chimera v1.11对TSGA10的三维结构和相互作用域进行能量最小化分析。采用UCSF Chimera v1.13.1和Hex 6.0进行分子对接模拟。使用Cytoscape v3.7.1和STRING v11.0进行蛋白-蛋白相互作用(PPI)网络分析。从biommodels数据库中获得HIF-1a相关的缺氧通路,并在CellDesigner v4.4.2中重建。结果:在MDA-MB-231细胞中,TSGA10的表达增加与转移减少显著相关,而TSGA10 mRNA水平与细胞迁移呈负相关,但在MCF-7细胞中没有。TSGA10的c端结构域与HIF-1α高亲和力相互作用,形成具有10个关键节点(HIF-1α、VEGFA、HSP90AA1、AKT1、ARNT、TP53、TSGA10、VHL、JUN、EGFR)的PPI网络。结论:TSGA10在高血糖/低血糖和缺氧情况下的功能表达发生改变,表明其作为肿瘤治疗的候选生物靶点的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Functional expression and impact of testis-specific gene antigen 10 in breast cancer: a combined in vitro and in silico analysis
Introduction: Testis-specific gene antigen 10 (TSGA10) is a less-known gene, which is involved in the vague biological paths of different cancers. Here, we investigated the TSGA10 expression using different concentrations of glucose under hypoxia and also its interaction with the hypoxia-inducible factor 1 (HIF-1). Methods: The breast cancer MDA-MB-231 and MCF-7 cells were cultured with different concentrations of glucose (5.5, 11.0 and 25.0 mM) under normoxia/hypoxia for 24, 48, and 72 hours and examined for the HIF-1α expression and cell migration by Western blotting and scratch assays. The qPCR was employed to analyze the expression of TSGA10. Three-dimensional (3D) structure and the energy minimization of the interacting domain of TSGA10 were performed by MODELLER v9.17 and Swiss-PDB viewer v4.1.0/UCSF Chimera v1.11. The UCSF Chimera v1.13.1 and Hex 6.0 were used for the molecular docking simulation. The Cytoscape v3.7.1 and STRING v11.0 were used for protein-protein interaction (PPI) network analysis. The HIF-1a related hypoxia pathways were obtained from BioModels database and reconstructed in CellDesigner v4.4.2. Results: The increased expression of TSGA10 was found to be significantly associated with the reduced metastasis in the MDA-MB-231 cells, while an inverse relationship was seen between the TSGA10 mRNA level and cellular migration but not in the MCF-7 cells. The C-terminal domain of TSGA10 interacted with HIF-1α with high affinity, resulting in PPI network with 10 key nodes (HIF-1α, VEGFA, HSP90AA1, AKT1, ARNT, TP53, TSGA10, VHL, JUN, and EGFR). Conclusions: Collectively, TSGA10 functional expression alters under the hyper-/hypo-glycemia and hypoxia, which indicates its importance as a candidate bio-target for the cancer therapy.
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