4.8 Article

Individualized lncRNA differential expression profile reveals heterogeneity of breast cancer

Journal

ONCOGENE
Volume 40, Issue 27, Pages 4604-4614

Publisher

SPRINGERNATURE
DOI: 10.1038/s41388-021-01883-6

Keywords

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Funding

  1. National Natural Science Foundation of China [61673143, 61873075]
  2. National Key R&D Program of China [2018YFC2000100]
  3. Postdoctoral Scientific Research Developmental Fund [LBH-Q16166]
  4. Fundamental Research Funds for the Heilongjiang Provincial Universities [31041180010]

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The study individualized lncRNA expression profiles for breast cancer using the LncRNA Individualization method, constructing an individualized differentially expressed lncRNA profile for breast cancer and investigating subtype-specific lncRNAs.
Long non-coding RNAs (lncRNAs) play key regulatory roles in breast cancer. However, population-level differential expression analysis methods disregard the heterogeneous expression of lncRNAs in individual patients. Therefore, we individualized lncRNA expression profiles for breast invasive carcinoma (BRCA) using the method of LncRNA Individualization (LncRIndiv). After evaluating the robustness of LncRIndiv, we constructed an individualized differentially expressed lncRNA (IDElncRNA) profile for BRCA and investigated the subtype-specific IDElncRNAs. The breast cancer subtype-specific IDElncRNA showed frequent co-occurrence with alterations of protein-coding genes, including mutations, copy number variation and differential methylation. We performed hierarchical clustering to subdivide TNBC and revealed mesenchymal subtype and immune subtype for TNBC. The TNBC immune subtype showed a better prognosis than the TNBC mesenchymal subtype. LncRNA PTOV1-AS1 was the top differentially expressed lncRNA in the mesenchymal subtype. And biological experiments validated that the upregulation of PTOV1-AS1 could downregulate TJP1 (ZO-1) and E-Cadherin, and upregulate Vimentin, which suggests PTOV1-AS1 may promote epithelial-mesenchymal transition and lead to migration and invasion of TNBC cells. The mesenchymal subtype showed a higher fraction of M2 macrophages, whereas the immune subtype was more associated with CD4 + T cells. The immune subtype is characterized by genomic instability and upregulation of immune checkpoint genes, thereby suggesting a potential response to immunosuppressive drugs. Last, drug response analysis revealed lncRNA ENSG00000230082 (PRRT3-AS1) is a potential resistance biomarker for paclitaxel in BRCA treatment. Our analysis highlights that IDElncRNAs can characterize inter-tumor heterogeneity in BRCA and the new TNBC subtypes indicate novel insights into TNBC immunotherapy.

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