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Exosomal miRNA Analysis in Non-small Cell Lung Cancer NSCLC Patients' Plasma Through qPCR: A Feasible Liquid Biopsy Tool
Published on: May 27, 2016
MYLK and MYL9 expression in non-small cell lung cancer identified by bioinformatics analysis of public expression
1Department of Cardiothoracic Surgery, First Affiliated Hospital, Guangxi Medical University, Nanning, Guangxi, China.
Abstract:
Gene expression microarrays are widely used to investigate molecular targets in cancers, including lung cancer. In this study, we analyzed online non-small cell lung cancer (NSCLC) microarray databases, to screen the key genes and pathways related to NSCLC by bioinformatics analyses. And then, the expression levels of two selected genes in the down-regulated co-pathways, myosin light chain kinase (MYLK) and myosin regulatory light chain 9 (MYL9), were determined in tumor, paired paraneoplastic, and normal lung tissues. First, gene set enrichment analysis and meta-analysis were conducted to identify key genes and pathways that contribute to NSCLC carcinogenesis. Second, using the total RNA and protein extracted from lung cancer tissues (n = 240), adjacent non-cancer tissues (n = 240), and normal lung tissues (n = 300), we examined the MYLK and MYL9 expression levels by quantitative real-time PCR and Western blot. Finally, we explored the correlations between mRNA and protein expressions of these two genes and the clinicopathological parameters of NSCLC. Fifteen up-regulated and nine down-regulated co-pathways were observed. A number of differentially expressed genes (CALM1, THBS1, CSF3, BMP2, IL6ST, MYLK, ROCK2, IL3RA, MYL9, PPP2CA, CSF2RB, CNAQ, GRIA2, IL10RA, IL10RB, IL11RA, LIFR, PLCB4, and RAC3) were identified (P < 0.01) in the down-regulated co-pathways. The expression levels of MYLK and MYL9, which act downstream of the vascular smooth muscle contraction signal pathway and focal adhesion pathway, were significantly lower in cancer tissue than those in the paraneoplastic and normal tissues (P < 0.05). Moreover, the expression levels of these two genes in stages III and IV NSCLC were significantly increased, when compared to stages I and II, and expressions levels in NSCLC with lymphatic metastasis were higher than that without lymphatic metastasis (P < 0.05). Additionally, significant lower expression levels of the two genes were found in smokers than in nonsmokers (P < 0.05). In contrast, gender, differentiated degrees, and pathohistological type appeared to have no impact on these gene expressions (P > 0.05). These findings suggested that low MYLK and MYL9 expressions might be associated with the development of NSCLC. These genes may be also relevant to NSCLC metastasis. Future investigations with large sample sizes needed to verify these findings.
Insights
Low expression of myosin light chain kinase (MYLK) and myosin regulatory light chain 9 (MYL9) genes is linked to non-small cell lung cancer (NSCLC) development and metastasis. These genes may serve as potential biomarkers for NSCLC progression.
Area of Science:
- Oncology
- Molecular Biology
- Bioinformatics
Background:
- Gene expression microarrays are crucial for identifying molecular targets in cancers, including lung cancer.
- Understanding key genes and pathways in non-small cell lung cancer (NSCLC) is vital for developing targeted therapies.
Purpose of the Study:
- To identify key genes and pathways associated with NSCLC using bioinformatics analysis of microarray data.
- To investigate the expression levels of myosin light chain kinase (MYLK) and myosin regulatory light chain 9 (MYL9) in NSCLC tissues.
- To explore the correlation between MYLK and MYL9 expression and NSCLC clinicopathological parameters.
Main Methods:
- Bioinformatic analysis of NSCLC microarray databases, including gene set enrichment analysis and meta-analysis.
- Quantitative real-time PCR and Western blot to determine MYLK and MYL9 mRNA and protein expression levels.
- Analysis of gene expression in tumor, paraneoplastic, and normal lung tissues from 240 NSCLC patients, 240 adjacent non-cancer tissues, and 300 normal lung tissues.
Main Results:
- Fifteen up-regulated and nine down-regulated co-pathways were identified in NSCLC.
- Significantly lower expression of MYLK and MYL9 was observed in NSCLC tissues compared to paraneoplastic and normal tissues.
- Increased MYLK and MYL9 expression correlated with advanced NSCLC stages (III/IV), lymphatic metastasis, and smoking status.
Conclusions:
- Down-regulated MYLK and MYL9 expression may be associated with the development and progression of NSCLC.
- MYLK and MYL9 may play a role in NSCLC metastasis and could serve as potential diagnostic or prognostic biomarkers.
- Further large-scale studies are warranted to validate these findings and explore therapeutic implications.
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