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BCAR1 promotes proliferation and cell growth in lung adenocarcinoma via upregulation of POLR2A

机译:BCAR1通过对Polr2a的上调提升肺腺癌的增殖和细胞生长

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BACKGROUND:This study was designed to investigate the effects of a novel carcinogenetic molecule, p130cas (breast cancer antiestrogen resistance protein 1 or BCAR1) on proliferation and cell growth in lung adenocarcinoma. The study also aimed to identify the possible underlying signal networks of BCAR1.METHODS:First, we evaluated proliferation, cell colony formation, apoptosis, and cell cycle after BCAR1 was knocked out (KO) using CRISPR-Cas9 technology in H1975 and H1299 human lung adenocarcinoma cells. Subsequently, BCAR1 was upregulated in 293T cells and immunoprecipitation-mass spectrometry (IP-MS) was used with bioinformatics analysis to screen for potential networks of BCAR1 interacting proteins. Ultimately, we validated the correlated expressions of BCAR1 and a selected hub gene, RNA polymerase II subunit A (POLR2A), in 54 lung adenocarcinoma tissues, as well as in H1975 and H1299 cells.RESULTS:Cell proliferation of H1975 and H1299 was significantly inhibited following BCAR1-KO. Colony formation of H1975 cells was also significantly decreased following BCAR1-KO. IP-MS demonstrated 419 potential proteins that may interact with BCAR1. Among them, 68 genes were significantly positively correlated to BCAR1 expression, as verified by TCGA. Six hub genes were revealed by PPI String. High expression of POLR2A, MAPK3, MOV10, and XAB2 predicted poor prognosis in lung adenocarcinoma, as verified by the K-M plotter database. POLR2A and MAPK3 are involved in both catalytic activity and transferase activity. POLR2A and BCAR1 were significantly increased in lung cancer tissues as compared with matched normal tissues. High expression of POLR2A was significantly positively correlated to BCAR1 overexpression and predicted poor prognosis in 54 lung cancer cases. POLR2A expression was significantly decreased following BCAR1-KO in H1975 and H1299 cells.CONCLUSIONS:BCAR1 promotes proliferation and cell growth, probably via upregulation of POLR2A and subsequent enhancement of catalytic and transferase activities. However, additional robust studies are required to elucidate the mechanisms involved.? 2020 The Authors. Thoracic Cancer published by China Lung Oncology Group and John Wiley & Sons Australia, Ltd.
机译:背景:本研究旨在探讨新型致癌物分子,P130CAS(乳腺癌抗雌激素抗性蛋白1或BCAR1)对肺腺癌的增殖和细胞生长的影响。该研究还旨在确定BCAR1的可能底层信号网络:首先,在H1975和H1299和H1299人肺中使用CRISPR-Cas9技术在BCAR1被淘汰(KO)后评估增殖,细胞群形成,细胞凋亡和细胞周期腺癌细胞。随后,在293T细胞中上调BCAR1,免疫沉淀 - 质谱法(IP-MS)与生物信息学分析用于BCAR1相互作用蛋白的潜在网络。最终,我们验证了BCAR1和所选轮毂基因的相关表达,RNA聚合酶II亚基A(POLR2A),在54个肺腺癌组织中,以及H1975和H1299细胞。结果:H1975和H1299的细胞增殖显着抑制遵循Bcar1-ko。在BCAR1-KO后,H1975细胞的菌落形成也显着降低。 IP-MS展示了419个可能与BCAR1相互作用的潜在蛋白质。其中,如通过TCGA验证的,68个基因与BCAR1表达显着呈正相关。 PPI串揭示了六个枢纽基因。 PolR2A,MAPK3,MOV10和XAB2的高表达预测肺腺癌预后差,如K-M绘图仪数据库验证。 POLR2A和MAPK3涉及催化活性和转移酶活性。与匹配的正常组织相比,POLR2A和BCAR1在肺癌组织中显着增加。 PolR2a的高表达与BCAR1过表达和预测54例肺癌病例预测差异显着相关。在H1975和H1299细胞中BCAR1-KO后,POLR2A表达显着降低。结论:BCAR1促进增殖和细胞生长,可能通过对POLR2A的上调和随后的催化和转移酶活性的增强。然而,需要额外的稳健研究来阐明所涉及的机制。 2020作者。中国肺部肿瘤集团和约翰瓦里和儿子澳大利亚发表的胸癌

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