CDK1 and HSP90AA1 Appear as the Novel Regulatory Genes in Non-Small Cell Lung Cancer: A Bioinformatics Approach.
Nirjhar BhattacharyyaSamriddhi GuptaShubham SharmaAman SoniSali Abubaker BagabirMalini BhattacharyyaAtreyee MukherjeeAtiah H AlmalkiMustfa F AlkhananiShafiul HaqueAshwini Kumar RayR K Brojen SinghPublished in: Journal of personalized medicine (2022)
Lung cancer is one of the most invasive cancers affecting over a million of the population. Non-small cell lung cancer (NSCLC) constitutes up to 85% of all lung cancer cases, and therefore, it is essential to identify predictive biomarkers of NSCLC for therapeutic purposes. Here we use a network theoretical approach to investigate the complex behavior of the NSCLC gene-regulatory interactions. We have used eight NSCLC microarray datasets GSE19188, GSE118370, GSE10072, GSE101929, GSE7670, GSE33532, GSE31547, and GSE31210 and meta-analyzed them to find differentially expressed genes (DEGs) and further constructed a protein-protein interaction (PPI) network. We analyzed its topological properties and identified significant modules of the PPI network using cytoscape network analyzer and MCODE plug-in. From the PPI network, top ten genes of each of the six topological properties like closeness centrality, maximal clique centrality (MCC), Maximum Neighborhood Component (MNC), radiality, EPC (Edge Percolated Component) and bottleneck were considered for key regulator identification. We further compared them with top ten hub genes (those with the highest degrees) to find key regulator (KR) genes. We found that two genes, CDK1 and HSP90AA1, were common in the analysis suggesting a significant regulatory role of CDK1 and HSP90AA1 in non-small cell lung cancer. Our study using a network theoretical approach, as a summary, suggests CDK1 and HSP90AA1 as key regulator genes in complex NSCLC network.
Keyphrases
- bioinformatics analysis
- small cell lung cancer
- genome wide
- protein protein
- genome wide identification
- transcription factor
- heat shock protein
- advanced non small cell lung cancer
- cell cycle
- small molecule
- heat stress
- heat shock
- network analysis
- dna methylation
- genome wide analysis
- blood pressure
- gene expression
- brain metastases
- heart rate
- oxidative stress
- rna seq
- wastewater treatment
- cell proliferation