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Published on: March 1, 2024
MAPK14 over-expression is a transcriptomic feature of polycythemia vera and correlates with adverse clinical outcomes
Chao Guo1, Ya-Yue Gao1, Qian-Qian Ju1
1Department of Hematology, China-Japan Friendship Hospital, Yinghua East Street, Beijing, China.
Background:
The transcriptomic signature has not been fully elucidated in PV, as well as mRNA markers for clinical variables (thrombosis, leukemic transformation, survival, etc.). We attempted to reveal and validate crucial co-expression modules and marker mRNAs correlating with polycythemia vera (PV) by weighted gene co-expression network analysis (WGCNA).
Material And Methods:
The GSE57793/26014/61629 datasets were downloaded from Gene Expression Omnibus (GEO) database and integrated into one fused dataset. By R software and 'WGCNA' package, the PV-specific co-expression module was identified, the pathway enrichment profile of which was obtained by over-representation analysis (ORA). Protein-protein interaction (PPI) network and hub gene analysis identified MAPK14 as our target gene. Then the distribution of MAPK14 expression in different disease/mutation types, were depicted based on external independent datasets. Genome-scale correlation analysis revealed the association of MAPK14 and JAK/STAT family genes. Then gene set enrichment analysis (GSEA) was performed to detect the activated and suppressed pathways associating with MAPK14 expression. Moreover, GSE47018 dataset was utilized to compare clinical variables (thrombosis, leukemic transformation, survival, etc.) between MAPK14-high and MAPK14-low groups.
Results:
An integrated dataset including 177 samples (83 PV, 35 ET, 17 PMF and 42 normal donors) were inputted into WGCNA. The 'tan' module was identified as the PV-specific module (R2 = 0.56, p = 8e-16), the genes of which were dominantly enriched in pro-inflammatory pathways (Toll-like receptor (TLR)/TNF signaling, etc.). MAPK14 is identified as the top hub gene in PV-related PPI network with the highest betweenness. External datasets validated that the MAPK14 expression was significantly higher in PV than that of essential thrombocytosis (ET)/primary myelofibrosis (PMF) patients and normal donors. JAK2 homozygous mutation carriers have higher level of MAPK14 than that of other mutation types. The expression of JAK/STAT family genes significantly correlated with MAPK14, which also contributed to the activation of oxidated phosphorylation, interferon-alpha (IFNα) response and PI3K-Akt-mTOR signaling, etc. Moreover, MAPK14-high group have more adverse clinical outcomes (splenectomy, thrombosis, disease aggressiveness) and inferior survival than MAPK14-low group.
Conclusion:
MAPK14 over-expression was identified as a transcriptomic feature of PV, which was also related to inferior clinical outcomes. The results provided novel insights for biomarkers and therapeutic targets for PV.
Insights
This study identified MAPK14 as a key gene in polycythemia vera (PV), showing its overexpression correlates with poor clinical outcomes and suggesting it as a potential biomarker and therapeutic target for PV.
Area of Science:
- Hematology
- Molecular Biology
- Genomics
Background:
- The transcriptomic signature of polycythemia vera (PV) and its correlation with clinical outcomes remain incompletely understood.
- Identifying mRNA markers associated with thrombosis, leukemic transformation, and survival in PV is crucial for improved patient management.
Purpose of the Study:
- To reveal and validate key co-expression modules and marker mRNAs associated with PV using weighted gene co-expression network analysis (WGCNA).
- To identify potential biomarkers and therapeutic targets for PV based on transcriptomic data.
Main Methods:
- Integrated multiple Gene Expression Omnibus (GEO) datasets for comprehensive analysis.
- Applied WGCNA to identify PV-specific gene modules and performed pathway enrichment analysis.
- Utilized protein-protein interaction (PPI) networks and external datasets to identify and validate MAPK14 as a key gene, analyzing its correlation with JAK/STAT family genes and clinical variables.
Main Results:
- Identified a PV-specific gene module enriched in pro-inflammatory pathways.
- MAPK14 emerged as a top hub gene in the PV-related PPI network, with significantly higher expression in PV patients compared to other groups.
- MAPK14 expression correlated with JAK/STAT family genes and activated specific signaling pathways; high MAPK14 expression was linked to adverse clinical outcomes and inferior survival.
Conclusions:
- MAPK14 overexpression is a transcriptomic feature of PV associated with poorer clinical outcomes.
- The findings offer novel insights into potential biomarkers and therapeutic targets for polycythemia vera.
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