| Literature DB >> 29099271 |
Chenzhe Feng1,2, Fang Ma1, Chunhong Hu1, Jin-An Ma1, Jingjing Wang1, Yang Zhang1, Fang Wu1, Tao Hou1, Shun Jiang1, Yapeng Wang1, Yeqian Feng1.
Abstract
Cisplatin (DDP) -based chemotherapy is a standard strategy for cervical cancer, while chemoresistance remains a huge challenge. Copper transporter protein 1 (CTR1), a copper influx transporter required for high affinity copper (probably reduced Cu I) transport into the cell, reportedly promotes a significant fraction of DDP internalization in tumor cells. In the present study, we evaluated the function of CTR1 in the cell proliferation of cervical cancer upon DDP treatment. MicroRNAs (miRNAs) have been regarded as essential regulators of cell proliferation, apoptosis, migration, as well as chemoresistance. By using online tools, we screened for candidate miRNAs potentially regulate CTR1, among which miR-130a has been proved to promote cervical cancer cell proliferation through targeting PTEN in our previous study. In the present study, we investigated the role of miR-130a in cervical cancer chemoresistance to DDP, and confirmed the binding of miR-130a to CTR1. SOX9 also reportedly act on cancer chemoresistance. In the present study, we revealed that SOX9 inversely regulated miR-130a through direct targeting the promoter of miR-130a. Consistent with previous studies, SOX9 could affect cervical cancer chemoresistance to DDP. Taken together, we demonstrated a SOX9/miR-130a/CTR1 axis which modulated the chemoresistance of cervical cancer cell to DDP, and provided promising targets for dealing with the chemoresistance of cervical cancer.Entities:
Keywords: SOX9; cervical cancer; chemoresistance; cisplatin (DDP); copper transporter protein 1 (CTR1); miR-130a
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Year: 2018 PMID: 29099271 PMCID: PMC5927693 DOI: 10.1080/15384101.2017.1395533
Source DB: PubMed Journal: Cell Cycle ISSN: 1551-4005 Impact factor: 4.534