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Establishment of a Human Multiple Myeloma Xenograft Model in the Chicken to Study Tumor Growth, Invasion and Angiogenesis
Published on: May 1, 2015
Identification of novel targets for multiple myeloma through integrative approach with Monte Carlo cross-validation
Congjian Liu1, Xiang Gu1, Zhenxian Jiang1
1Department of Orthopaedics, People's Hospital of Ri Zhao, No. 126 Tai-An Road, Ri Zhao 276826, Shandong, China.
Abstract:
More than one pathway is involved in disease development and progression, and two or more pathways may be interconnected to further affect the disease onset, as functional proteins participate in multiple pathways. Thus, identifying cross-talk among pathways is necessary to understand the molecular mechanisms of multiple myeloma (MM). Based on this, this paper looked at extracting potential pathway cross-talk in MM through an integrative approach using Monte Carlo cross-validation analysis. The gene expression library of MM (accession number: GSE6477) was downloaded from the Gene Expression Omnibus (GEO) database. The integrative approach was then used to identify potential pathway cross-talk, and included four steps: Firstly, differential expression analysis was conducted to identify differentially expressed genes (DEGs). Secondly, the DEGs obtained were mapped to the pathways downloaded from an ingenuity pathways analysis (IPA), to reveal the underlying relationship between the DEGs and pathways enriched by these DEGs. A subset of pathways enriched by the DEGs was then obtained. Thirdly, a discriminating score (DS) value for each paired pathway was computed. Lastly, random forest (RF) classification was used to identify the paired pathways based on area under the curve (AUC) and Monte Carlo cross-validation, which was repeated 50 times to explore the best paired pathways. These paired pathways were tested with another independently published MM microarray data (GSE85837), using in silico validation. Overall, 60 DEGs and 19 differential pathways enriched by DEGs were extracted. Each pathway was sorted based on their AUC values. The paired pathways, inhibition of matrix metalloproteases and EIF2 signaling pathway, indicated the best AUC value of 1.000. Paired pathways consisting of IL-8 and EIF2 signaling pathways with higher AUC of 0.975, were involved in 7 runs. Furthermore, it was validated consistently in separate microarray data sets (GSE85837). Paired pathways (inhibition of matrix metalloproteases and EIF2 signaling, IL-8 signaling and EIF2 signaling) exhibited the best AUC values and higher frequency of validation. Two paired pathways (inhibition of matrix metalloproteases and EIF2 signaling, IL-8 signaling and EIF2 signaling) were used to accurately classify MM and control samples. These paired pathways may be potential bio-signatures for diagnosis and management of MM.
Insights
Identifying pathway cross-talk is crucial for understanding multiple myeloma (MM). This study used an integrative approach to find key pathway interactions, revealing potential biomarkers for MM diagnosis and management.
Area of Science:
- Bioinformatics
- Molecular Biology
- Oncology
Background:
- Multiple myeloma (MM) development involves complex, interconnected molecular pathways.
- Understanding pathway cross-talk is essential for elucidating MM's molecular mechanisms.
Purpose of the Study:
- To identify potential pathway cross-talk in multiple myeloma (MM) using an integrative bioinformatics approach.
- To discover potential pathway-based biomarkers for MM diagnosis and management.
Main Methods:
- Downloaded MM gene expression data (GSE6477) from the Gene Expression Omnibus (GEO).
- Performed differential expression analysis to identify differentially expressed genes (DEGs).
- Utilized Ingenuity Pathway Analysis (IPA) and random forest (RF) classification with Monte Carlo cross-validation to identify and validate pathway interactions.
Main Results:
- Identified 60 DEGs and 19 enriched differential pathways.
- The paired pathways 'inhibition of matrix metalloproteases' and 'EIF2 signaling' showed the highest Area Under the Curve (AUC) of 1.000.
- Paired pathways including 'IL-8 signaling' and 'EIF2 signaling' also demonstrated high AUC (0.975) and consistent validation in independent datasets (GSE85837).
Conclusions:
- Two key paired pathways, 'inhibition of matrix metalloproteases' and 'EIF2 signaling', and 'IL-8 signaling' and 'EIF2 signaling', accurately classified MM and control samples.
- These identified pathway interactions may serve as potential biomarkers for MM diagnosis and treatment strategies.
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