Construction and identification of lncRNA/circRNA-coregulated ceRNA networks in gemcitabine-resistant bladder carcinoma.

IF 3.3 3区 医学 Q2 ONCOLOGY Carcinogenesis Pub Date : 2023-12-30 DOI:10.1093/carcin/bgad065
Jingjing Pan, Xiaojuan Xie, Jinxiu Sheng, Chenxi Ju, Shuaijie Sun, Fangfang Cui, Wen Zhai, Liang Ming
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Abstract

Objectives: To explore the regulatory networks that underlie the development of chemoresistance in bladder cancer.

Methods: We analyzed profiles of differentially expressed long non-coding RNAs (lncRNAs), circular RNAs (circRNAs), microRNAs (miRNAs) and messenger RNA (mRNAs) in gemcitabine-resistant/sensitive bladder cancer cells using next-generation sequencing data.

Results: Hundreds of differentially expressed lncRNAs and miRNAs and thousands of circRNAs and mRNAs were identified. Bioinformatics analysis revealed the chromosomal localizations, classification and coexpression of mRNAs, as well as candidates for cis and trans regulation by lncRNAs. Furthermore, Gene Ontology and Kyoto Encyclopedia of Genes and Genomes pathway enrichment analysis of differentially expressed mRNAs and circRNAs indicated important functional roles of coregulated RNAs, thus establishing competing endogenous RNA (ceRNA) and protein-protein interactions networks that may underlie chemoresistance in bladder cancer. We demonstrated that lncRNA LINP1 can act as a ceRNA by inhibiting miR-193a-5p to increase TP73 expression; and that lncRNA ESRG and hsa_circ_0075881 can simultaneously bind miR-324-3p to increase ST6GAL1 expression. Modulation of ceRNA network components using ablation and overexpression approaches contributed to gemcitabine resistance in bladder cancer cells.

Conclusions: These results elucidate mechanisms by which lncRNAs and circRNAs coregulate the development of bladder cancer cell resistance to gemcitabine, thus laying the foundation for future research to identify biomarkers and disease targets.

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吉西他滨耐药膀胱癌中lncRNA/circRNA协同调节的ceRNA网络的构建和鉴定。
为了探索癌症化疗耐药性发展的调控网络,我们使用下一代测序数据分析了吉西他滨耐药/敏感膀胱癌症细胞中差异表达的lncRNA、circRNA、miRNA和mRNA的图谱。鉴定了数百种差异表达的lncRNA和miRNA以及数千种circRNA和mRNA。生物信息学分析揭示了mRNA的染色体定位、分类和共表达,以及lncRNA顺式和反式调控的候选者。此外,对差异表达的mRNA和circRNA的GO和KEGG途径富集分析表明,共同调节的RNA具有重要的功能作用,从而建立了可能成为癌症化疗耐药性基础的ceRNA和蛋白质-蛋白质相互作用网络。我们证明lncRNA LINP1可以通过抑制miR-193a-5p来增加TP73的表达,从而起到ceRNA的作用;lncRNA ESRG和hsa_cir_0075881可以同时结合miR-324-3p以增加ST6GAL1的表达。使用消融和过表达方法调节ceRNA网络组分有助于膀胱癌症细胞对吉西他滨的耐药性。这些结果阐明了lncRNA和circRNA共同调节癌症细胞对吉西他滨耐药性发展的机制,从而为未来识别生物标志物和疾病靶点的研究奠定了基础。
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来源期刊
Carcinogenesis
Carcinogenesis 医学-肿瘤学
CiteScore
9.20
自引率
2.10%
发文量
95
审稿时长
1 months
期刊介绍: Carcinogenesis: Integrative Cancer Research is a multi-disciplinary journal that brings together all the varied aspects of research that will ultimately lead to the prevention of cancer in man. The journal publishes papers that warrant prompt publication in the areas of Biology, Genetics and Epigenetics (including the processes of promotion, progression, signal transduction, apoptosis, genomic instability, growth factors, cell and molecular biology, mutation, DNA repair, genetics, etc.), Cancer Biomarkers and Molecular Epidemiology (including genetic predisposition to cancer, and epidemiology), Inflammation, Microenvironment and Prevention (including molecular dosimetry, chemoprevention, nutrition and cancer, etc.), and Carcinogenesis (including oncogenes and tumor suppressor genes in carcinogenesis, therapy resistance of solid tumors, cancer mouse models, apoptosis and senescence, novel therapeutic targets and cancer drugs).
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