Literature DB >> 28944451

Expression of miRNA-26b-5p and its target TRPS1 is associated with radiation exposure in post-Chernobyl breast cancer.

Christina M Wilke1, Julia Hess1,2, Sergiy V Klymenko3, Vadim V Chumak3, Liubov M Zakhartseva4, Elena V Bakhanova3, Annette Feuchtinger5, Axel K Walch5, Martin Selmansberger1, Herbert Braselmann1,2, Ludmila Schneider1,2, Adriana Pitea1,6, Julia Steinhilber7, Falko Fend7, Hans C Bösmüller7, Horst Zitzelsberger1,2,8, Kristian Unger1,2.   

Abstract

Ionizing radiation is a well-recognized risk factor for the development of breast cancer. However, it is unknown whether radiation-specific molecular oncogenic mechanisms exist. We investigated post-Chernobyl breast cancers from radiation-exposed female clean-up workers and nonexposed controls for molecular changes. Radiation-associated alterations identified in the discovery cohort (n = 38) were subsequently validated in a second cohort (n = 39). Increased expression of hsa-miR-26b-5p was associated with radiation exposure in both of the cohorts. Moreover, downregulation of the TRPS1 protein, which is a transcriptional target of hsa-miR-26b-5p, was associated with radiation exposure. As TRPS1 overexpression is common in sporadic breast cancer, its observed downregulation in radiation-associated breast cancer warrants clarification of the specific functional role of TRPS1 in the radiation context. For this purpose, the impact of TRPS1 on the transcriptome was characterized in two radiation-transformed breast cell culture models after siRNA-knockdown. Deregulated genes upon TRPS1 knockdown were associated with DNA-repair, cell cycle, mitosis, cell migration, angiogenesis and EMT pathways. Furthermore, we identified the interaction partners of TRPS1 from the transcriptomic correlation networks derived from gene expression data on radiation-transformed breast cell culture models and sporadic breast cancer tissues provided by the TCGA database. The genes correlating with TRPS1 in the radiation-transformed breast cell lines were primarily linked to DNA damage response and chromosome segregation, while the transcriptional interaction partners in the sporadic breast cancers were mostly associated with apoptosis. Thus, upregulation of hsa-miR-26b-5p and downregulation of TRPS1 in radiation-associated breast cancer tissue samples suggests these molecules representing radiation markers in breast cancer.
© 2017 UICC.

Entities:  

Keywords:  Chernobyl; TRPS1; breast cancer; hsa-miR-26b-5p; radiation-associated

Mesh:

Substances:

Year:  2017        PMID: 28944451     DOI: 10.1002/ijc.31072

Source DB:  PubMed          Journal:  Int J Cancer        ISSN: 0020-7136            Impact factor:   7.396


  16 in total

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Journal:  Signal Transduct Target Ther       Date:  2019-11-18
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