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长链非编码RNA脑细胞质RNA 1通过海绵化微小RNA-330-5p并上调高迁移率族蛋白盒3诱导宫颈癌细胞顺铂耐药。

Long Noncoding RNA Brain Cytoplasmic RNA 1 Induces Cisplatin-Resistance of Cervical Cancer Cells by Sponging MicroRNA-330-5p and Upregulating High-Mobility Group Box 3.

作者信息

Sun Dan, Cao Rui, Han Lu, Yu Xiaohui, Wang Huali, Wang Xiuying, Chen Xuelian

机构信息

Department of Gynecology, Dalian Women's and Children's Medical Center (Group), Dalian, China.

出版信息

Gynecol Obstet Invest. 2022;87(3-4):200-210. doi: 10.1159/000525437. Epub 2022 Jun 15.

Abstract

OBJECTIVES

The aim of the study was to find out the function of long noncoding RNA brain cytoplasmic RNA 1 (BCYRN1) in cisplatin (DDP)-resistance of cervical cancer (CC) cells. Design and Materials, Setting, Methods: BCYRN1 expression in CC and DDP-resistant cells was evaluated, with the association of BCYRN1 and prognosis analyzed. Then, DDP-resistant cells with BCYRN1 knockdown were established and the DDP-resistance of these cells was assessed. BCYRN1 subcellular localization was detected and confirmed. Besides, the binding relations of BCYRN1 and microRNA (miR)-330-5p and between miR-330-5p and high-mobility group box 3 (HMGB3) were examined and verified. Moreover, the role of miR-330-5p and HMGB3 in the mechanism of BCYRN1 modulating DDP-resistance of CC cells was detected. In addition, xenograft transplantation was conducted to confirm the effect of BCYRN1 in CC cell DDP-resistance.

RESULTS

BCYRN1 was overexpressed in CC, which resulted in poor prognosis and DDP-resistance. BCYRN1 knockdown in DDP-resistant cells downregulated DDP-resistance. Mechanically, BCYRN1 sponged miR-330-5p to strengthen HMGB3 mRNA level. Besides, miR-330-5p underexpression or HMGB3 overexpression reversed the function of BCYRN1 knockdown in inhibiting DDP-resistance of CC cells. Eventually, BCYRN1 knockdown reduced the DDP-resistance of CC cells in vivo.

LIMITATIONS

There are still some deficiencies in the research; for example, whether there are other miRs working as the downstream genes of BCYRN1 in the competing endogenous RNA interaction is not fully clarified, nor the other downstream mechanisms of miR-330-5p. Besides, the experimental findings and their application into practice need extensive validation.

CONCLUSIONS

BCYRN1 knockdown could disrupt the DDP-resistance of CC cells through upregulating miR-330-5p to suppress HMGB3 mRNA level.

摘要

目的

本研究旨在探究长链非编码RNA脑细胞质RNA1(BCYRN1)在宫颈癌(CC)细胞顺铂(DDP)耐药中的作用。设计与材料、设置、方法:评估BCYRN1在CC细胞和DDP耐药细胞中的表达,并分析BCYRN1与预后的相关性。然后,构建BCYRN1敲低的DDP耐药细胞,并评估这些细胞的DDP耐药性。检测并确认BCYRN1的亚细胞定位。此外,检测并验证BCYRN1与微小RNA(miR)-330-5p以及miR-330-5p与高迁移率族蛋白盒3(HMGB3)之间的结合关系。此外,检测miR-330-5p和HMGB3在BCYRN1调节CC细胞DDP耐药机制中的作用。另外,进行异种移植以证实BCYRN1在CC细胞DDP耐药中的作用。

结果

BCYRN1在CC细胞中高表达,这导致预后不良和DDP耐药。敲低DDP耐药细胞中的BCYRN1可下调DDP耐药性。机制上,BCYRN1通过吸附miR-330-5p来增强HMGB3 mRNA水平。此外,miR-330-5p低表达或HMGB3高表达可逆转BCYRN1敲低对CC细胞DDP耐药抑制作用。最终,敲低BCYRN1可降低CC细胞在体内的DDP耐药性。

局限性

本研究仍存在一些不足之处;例如,在竞争性内源RNA相互作用中,是否有其他miR作为BCYRN1的下游基因尚未完全阐明,miR-330-5p的其他下游机制也未明确。此外,实验结果及其在实践中的应用需要广泛验证。

结论

敲低BCYRN1可通过上调miR-330-5p以抑制HMGB3 mRNA水平来破坏CC细胞的DDP耐药性。

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