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ZNFX1 anti-sense RNA 1 promotes the tumorigenesis of prostate cancer by regulating c-Myc expression via a regulatory network of competing endogenous RNAs. | LitMetric

AI Article Synopsis

  • ZFAS1 is highly expressed in prostate cancer and its overexpression is linked to worse clinical outcomes, promoting cell proliferation, invasion, and epithelial-mesenchymal transition.
  • The study identifies miR-27a/15a/16 as tumor suppressors that are targeted by ZFAS1, contributing to the regulation of important cancer-related pathways.
  • YAP1, TEAD1, and KDM3A are downstream targets that enhance c-Myc expression in an androgen-independent manner, suggesting ZFAS1 plays a key role in prostate cancer progression through this regulatory network.

Article Abstract

ZNFX1 anti-sense RNA 1 (ZFAS1) has been indicated in the tumorigenesis of various human cancers. However, the role of ZFAS1 in prostate cancer (PCa) progression and the underlying mechanisms remain incompletely understood. In the present study, we discovered that ZFAS1 is upregulated in PCa and that ZFAS1 overexpression predicted poor clinical outcomes. ZFAS1 overexpression notably promoted the proliferation, invasion, and epithelial-mesenchymal transition of PCa cells. Furthermore, we not only discovered that miR-27a/15a/16 are targeted by ZFAS1, which binds to their miRNA-response elements, but also revealed their tumor suppressor roles in PCa. We also identified that the Hippo pathway transducer YAP1, as well as its cooperator, TEAD1, are common downstream targets of miR-27a/15a/16. In addition, H3K9 demethylase KDM3A was found to be another target gene of miR-27a. Importantly, YAP1, TEAD1, and KDM3A all act as strong c-Myc inducers in an androgen-independent manner. Taken together, we suggest a regulatory network in which ZFAS1 is capable of enhancing c-Myc expression by inducing the expression of YAP1, TEAD1, and KDM3A through crosstalk with their upstream miRNAs, thereby globally promoting prostate cancer tumorigenesis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11104963PMC
http://dx.doi.org/10.1007/s00018-019-03226-xDOI Listing

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