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Identifying the crosstalk of dysfunctional pathways mediated by lncRNAs in breast cancer subtypes
Li Wang1, Jing Li2, Hongying Zhao1
1College of Bioinformatics Science and Technology, Harbin Medical University, Harbin, 150081, China. lixia@hrbmu.edu.cn xiaoyun@ems.hrbmu.edu.cn.
Abstract:
Crosstalk among abnormal pathways widely occurs in human cancer and generally leads to insensitivity to cancer treatment. How long non-coding RNAs (lncRNAs) participate in the regulation of an abnormal pathway crosstalk in human cancer is largely unknown. Here, we proposed a strategy that integrates mRNA and lncRNA expression profiles for systematic identification of lncRNA-mediated crosstalk among risk pathways in different breast cancer subtypes. We identified 12 to 44 crosstalking pathway pairs mediated by 28 to 49 lncRNAs in four breast cancer subtypes. An LncRNA-mediated crosstalking pathway network in each breast cancer subtype was then constructed. We observed a number of breast cancer subtype-specific crosstalks of risk pathways. These subtype-specific lncRNA-mediated pathway crosstalks largely determined subtype-selective functions. Notably, we observed that lncRNAs mediated the crosstalk of pathways by cooperating with known important protein-coding genes, which play core roles in the deterioration of breast cancer. And we also identified key lncRNAs contributing to the crosstalk network in each subtype. As an example, the low expression of LIFR-AS1 was associated with poor survival in LumB subtype, and its cooperated genes IL1R and TGFBR located at the most upstream of the MAPK signaling pathway shared a common cascade path (p38 MAPKs-MEF2C) that can result in proliferation, differentiation and apoptosis. In summary, we offer an effective way to characterize complex crosstalks mediated by lncRNAs in breast cancer subtypes, which can be applied to other diseases and provide useful information for understanding the pathogenesis of human cancer.
Insights
Long non-coding RNAs (lncRNAs) regulate abnormal pathway crosstalk in human cancers. This study identifies lncRNA-mediated pathway crosstalk in breast cancer subtypes, revealing subtype-specific functions and potential therapeutic targets.
Area of Science:
- Molecular Biology
- Genomics
- Cancer Research
Background:
- Aberrant pathway crosstalk is common in human cancers, contributing to treatment resistance.
- The role of long non-coding RNAs (lncRNAs) in regulating pathway crosstalk in cancer remains largely unexplored.
Purpose of the Study:
- To systematically identify lncRNA-mediated crosstalk among risk pathways in different breast cancer subtypes using integrated mRNA and lncRNA expression profiles.
- To construct lncRNA-mediated crosstalking pathway networks for each breast cancer subtype.
Main Methods:
- Integration of mRNA and lncRNA expression profiles.
- Identification of lncRNA-mediated crosstalking pathway pairs.
- Construction of lncRNA-mediated crosstalking pathway networks.
Main Results:
- Identified 28 to 49 lncRNAs mediating 12 to 44 crosstalking pathway pairs across four breast cancer subtypes.
- Observed numerous breast cancer subtype-specific pathway crosstalks, influencing subtype-selective functions.
- Discovered lncRNAs cooperate with protein-coding genes in pathway crosstalk, with LIFR-AS1 as an example in LumB subtype.
Conclusions:
- Developed an effective strategy to characterize complex lncRNA-mediated pathway crosstalk in breast cancer subtypes.
- Findings provide insights into cancer pathogenesis and can be applied to other diseases.
- Identified key lncRNAs and their cooperative roles in cancer progression, offering potential therapeutic avenues.
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