The Bioinformatics Study of the Interactions between MicroRNAs and Genes Involved in Relapse of breast Cancer Treated with Tamoxifen

Publish Year: 1397
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_ZUMS-26-115_003

تاریخ نمایه سازی: 11 اردیبهشت 1400

Abstract:

Background and Objective: Tamoxifen is the most commonly used treatment for the patients with breast cancer called ER +, which prevents the expression of genes that are effective in the growth and proliferation of cancer cells by estrogen. Resistant to Tamoxifen is a major clinical problem in breast cancer treatment. In recent studies, the role of microRNAs in tamoxifen resistance has been raised through the influence of regulation of cell cycle control genes. Throughout this study, the interactions of microRNAs with genes involved in tamoxifen resistance were investigated. Materials and Methods: By comparing the gene expression data in samples of patients sensitive and resistant to Tamoxifen from the GEO database and searching in the database of articles, genes and microRNAs with significant expression variations were determined. Then, by examining the correlation between the expression of genes and microRNAs and bioinformatics by mirwalk software, the interconnection network between the genes and microRNAs was drawn. Results: The results showed that ۲۱ genes and ۶۲ microRNAs altered in Tamoxifen resistant specimens. With miR۳۴۲-۳P/۵P targeting the HOXB۱۳, PRM۲, and KLK۳ genes, and MiR-۵۲۰h and miR-۵۸۲-۵p microRNAs, targeting ۵ reduced expression genes, can lead to recurrence of breast cancer. Conclusion: The regulatory network mapped out between a set of genes and microRNAs that are potentially involved in the recurrence of breast cancer treated with Tamoxifen could clarify the role of the microRNAs in the recurrence of breast cancer.

Authors

شهین رمازی

Cellular and Molecular Research Center, Sabzevar University of Medical Sciences, Sabzevar, Iran

الهام ایزی

Traditional and Complementary Medicine Research Center, Sabzevar University of Medical Sciences, Sabzevar, Iran

علی فصیحی

Cellular and Molecular Research Center, Sabzevar University of Medical Sciences, Sabzevar, Iran

پیام قاسمی دهکردی

Cellular and Molecular Research Center, Shahrekord University of Medical Sciences, Shahrekord, Iran

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  • References ...
  • Enayatrad M, Amoori N, Salehiniya H. Epidemiology and trends in ...
  • Jemal A, Siegel R, Xu J. Cancer statistics. CA Cancer ...
  • Banerjee S, Saxena N, Sengupta K, et al. 17alpha-estradiol-induced VEGF-A ...
  • mediated through ER independent but PI3K-Akt dependent signaling pathway. Biochem ...
  • Musgrove EA, Sutherland RL. Biological determinants of endocrine resistance in ...
  • Chang XZ, Li DQ, Hou YF, et al. Identification of ...
  • Shou J, Massarweh S, Osborne CK. Mechanisms of tamoxifen resistance: ...
  • Rubí v, Luis B, Fabio S. Mechanisms associated with resistance ...
  • Mosselman S, Polman J, Dijkema R.ERβ: identification and characterization of ...
  • Dixon D, Couse JF, Korach KS. Disruption of the estrogen ...
  • Croce CM. Oncogenes and cancer. N Engl J Med. 2008; ...
  • Filipowicz W, Bhattacharyya S, Sonenberg N. Mechanisms of post-transcriptional regulation ...
  • Gao FB. Context-dependent functions of specific microRNAs in neuronal development. ...
  • Tyler E, Ghoshal K, Ramaswamy B. MicroRNA-221/222 confers tamoxifen resistance ...
  • Aamir A, Kevin R, Ginnebaugh1, et al. Functional role of ...
  • Jiang Z, Zhengzhi Z, Peipei N. Downregulation of microRNA-27b-3p enhances ...
  • Mingrong L, Keshuo D, Guofeng Z, et al. MicroRNA-320a sensitizes ...
  • Xiao JM, Zuncai W, Paula D, Ryan, SJ. A two-gene ...
  • MaI C, Vincent N, Heole'ne F. A gene expression signature ...
  • Aoife W, Kirti S, Aleksandra B. MicroRNA-519a is a novel ...
  • Barrett T, Wilhite SE, Ledoux P, et al. NCBI GEO: ...
  • Dweep H. miRWalk - database: prediction of possible miRNA binding ...
  • Ciafrè SA, Galardi S, Mangiola A. Extensive modulation of a ...
  • Pallante P, Visone R, Ferracin M, et al: MicroRNA deregulation ...
  • Hanzhen X, Qiulian L, Ruichao C. A multi-step miRNA-mRNA regulatory ...
  • Marta L, Marta B, Luca A, Katia T, Laura M. ...
  • Ruiqi M, Chenyu W, Junjian W, Dong W. MiRNA–mRNA Interaction ...
  • Shah N1, Jin K, Cruz LA. HOXB13 mediates tamoxifen resistance ...
  • Daniela L, Verena MC, Eva C. Combined expression of KLK4, ...
  • Teh LK, Mohamed NI, Salleh MZ. The risk of recurrence ...
  • Sylvie RF, Anne DT, Ariane D, Sylvie C. 8p22 MTUS1 ...
  • Manavalan TT, Teng Y. Differential expression of microRNA expression in ...
  • Ward A, Balwierz A, Zhang JD, Ku M. Re-expression of ...
  • Ikeda K, Kuniko H, Toshihide U, Takashi S. MiR-378a-3p modulates ...
  • نمایش کامل مراجع