Parthasarathi K T Shreya, Mandal Susmita, Singh Smrita, Gundimeda Seetaramanjaneyulu, Jolly Mohit Kumar, Pandey Akhilesh, Sharma Jyoti
Institute of Bioinformatics, International Technology Park, Bangalore 560066, India.
Center for BioSystems Science and Engineering, Indian Institute of Science, Bangalore 560012, India.
Cancers (Basel). 2022 Mar 11;14(6):1444. doi: 10.3390/cancers14061444.
Uncontrolled growth of breast cells due to altered gene expression is a key feature of breast cancer. Alterations in the expression of ion channels lead to variations in cellular activities, thus contributing to attributes of cancer hallmarks. Changes in the expression levels of ion channels were observed as a consequence of EMT. Additionally, ion channels were reported in the activation of EMT and maintenance of a mesenchymal phenotype. Here, to identify altered ion channels in breast cancer patients, differential gene expression and weighted gene co-expression network analyses were performed using transcriptomic data. Protein-protein interactions network analysis was carried out to determine the ion channels interacting with hub EMT-related genes in breast cancer. Thirty-two ion channels were found interacting with twenty-six hub EMT-related genes. The identified ion channels were further correlated with EMT scores, indicating mesenchymal phenotype. Further, the pathway map was generated to represent a snapshot of deregulated cellular processes by altered ion channels and EMT-related genes. Kaplan-Meier five-year survival analysis and Cox regressions indicated the expression of , , , and to be potentially associated with poor survival. Deregulated ion channels correlate with EMT-related genes and have a crucial role in breast cancer-associated tumorigenesis. Most likely, they are potential candidates for the determination of prognosis in patients with breast cancer.
由于基因表达改变导致的乳腺细胞不受控制的生长是乳腺癌的一个关键特征。离子通道表达的改变会导致细胞活动的变化,从而促成癌症特征的形成。上皮-间质转化(EMT)导致离子通道表达水平发生变化。此外,有报道称离子通道参与EMT的激活和间充质表型的维持。在此,为了识别乳腺癌患者中发生改变的离子通道,利用转录组数据进行了差异基因表达分析和加权基因共表达网络分析。进行了蛋白质-蛋白质相互作用网络分析,以确定与乳腺癌中EMT相关枢纽基因相互作用的离子通道。发现32个离子通道与26个EMT相关枢纽基因相互作用。所鉴定的离子通道进一步与EMT评分相关,表明为间充质表型。此外,生成了通路图以呈现由改变的离子通道和EMT相关基因导致的细胞过程失调的概况。Kaplan-Meier五年生存分析和Cox回归表明,[此处原文缺失具体基因名称]的表达可能与不良生存相关。失调的离子通道与EMT相关基因相关,在乳腺癌相关的肿瘤发生中起关键作用。它们很可能是乳腺癌患者预后判定的潜在候选指标。