4.5 Article

The lncRNA OGFRP1/miR-149-5p/IL-6 axis regulates prostate cancer chemoresistance

期刊

PATHOLOGY RESEARCH AND PRACTICE
卷 224, 期 -, 页码 -

出版社

ELSEVIER GMBH
DOI: 10.1016/j.prp.2021.153535

关键词

Prostate cancer; Chemoresistance; OGFRP1; MiR-149-5p; IL-6

资金

  1. National Natural Science Foundation of China - Pudong New District Commission of Health and Family Planning Leading Talent Program, Shanghai, China [81372318, PWRL2017-07]
  2. Science and Technology Commission Fund of Shanghai Fengxian District [20160907]

向作者/读者索取更多资源

OGFRP1 functions by sequestering miR-149-5p to indirectly promote upregulation of IL-6, thus increasing chemoresistance in PC cells. This OGFRP1/miR-149-5p/IL-6 axis may serve as a promising target for sensitizing and treating PC chemoresistance.
Background: The long non-coding RNA (lncRNA) OGFRP1 has been found to promote malignancy in prostate cancer (PC) and other cancer types. How this lncRNA functions in the regulation of PC chemoresistance, however, is poorly defined. Methods: qRT-PCR was employed to measure OGFRP1, miR-149-5p, and IL-6 expression in PC tissues and cells. IC50 values for paclitaxel and docetaxel in PC cells were assessed via a CCK-8 assay approach. Putative miR-1495p binding targets were identified and validated through bioinformatics assays and luciferase reporter assays, respectively. The impact of OGFRP1 on PC chemoresistance in vivo was validated using a xenograft model system. Results: Docetaxel-resistant PC (PC/DR) cells and tissues exhibited reduced OGFRP1 expression and increased miR-149-5p expression. Knocking down OGFRP1 augmented the sensitivity of these PC cells to docetaxel and paclitaxel in vitro and in vivo. Mechanistically, OGFRP1 was found to bind and sequester miR-149-5p within PC/ DR cells, thereby indirectly regulating IL-6 expression. Consistent with this model, the overexpression of IL-6 reversed the OGFRP1 knockdown-mediated reductions in docetaxel and paclitaxel IC50 values for these PC cells. Conclusions: OGFRP1 can sequester miR-149-5p, thereby indirectly promoting IL-6 upregulation and thereby promoting chemoresistance in PC cells. This OGFRP1/miR-149-5p/IL-6 axis may thus be a promising target for therapeutic efforts aimed at PC chemosensitization and treatment.

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