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人视网膜母细胞瘤 Y79 细胞及其依托泊苷耐药亚系之间的不同转录组谱揭示了一种耐药机制。

Different transcriptome profiles between human retinoblastoma Y79 cells and an etoposide-resistant subline reveal a chemoresistance mechanism.

机构信息

Department of Pharmacy, Affiliated Cancer Hospital of Zhengzhou University, Henan Cancer Hospital, No.127 Dongming Road, Zhengzhou, 450008, China.

Key Laboratory of Antibiotic Bioengineering of National Health and Family Planning Commission (NHFPC), Institute of Medicinal Biotechnology (IMB), Chinese Academy of Medical Sciences and Peking Union Medical College (CAMS & PUMC), NO.1 Tiantan Xili, Beijing, 100050, China.

出版信息

BMC Ophthalmol. 2020 Mar 6;20(1):92. doi: 10.1186/s12886-020-01348-6.

Abstract

BACKGROUND

Retinoblastoma (RB) is the most frequent pediatric retinal tumor. In the present study, to elucidate chemoresistance mechanisms and identify potential biomarkers in RB, we utilized RNA sequencing (RNAseq) technological platforms to reveal transcriptome profiles and identify any differentially expressed genes (DEGs) between an etoposide drug-resistant subline (Y79/EDR) and parental Y79 cells.

METHODS

To test whether Y79/EDR cells showed resistance to antineoplastic agents for RB, we treated the cells with etoposide, carboplatin and vincristine and analyzed them with a Cell Counting Kit-8 (CCK-8). Y79/EDR and parental Y79 cells were used for RNAseq and bioinformatics analysis to enable a genome-wide review of DEGs between the two lines using the DESeq R package (1.10.1). Then, DEG enrichment in Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways was analyzed with KOBAS software. Next, real-time quantitative reverse transcription polymerase chain reaction (real time QRT-PCR) and cytotoxicity assays were performed to experimentally and functionally validate the identified candidate biomarkers.

RESULTS

Y79/EDR cells showed resistance to etoposide, carboplatin and vincristine at different concentrations. In total, 524 transcripts were differentially expressed in Y79/EDR cells based on analysis of fragments per kilobase of transcript per million fragments mapped (FPKM); among these, 57 genes were downregulated and 467 genes were upregulated in Y79/EDR cells compared to parental Y79 cells. We selected candidate DEGs, including ARHGAP9, HIST1H4H, RELN, DDIT4, HK2, STC1 and PFKFB4, for mRNA expression validation with real time QRT-PCR assays and found that the expression levels determined by real time QRT-PCR were consistent with the RNAseq data. Further studies involving downregulation of ARHGAP9 with a specific siRNA showed that ARHGAP9 altered the cellular sensitivity of Y79 cells to etoposide and carboplatin.

CONCLUSION

Our initial findings provided a genomic view of the transcription profiles of etoposide-induced acquired resistance in RB. Follow-up studies indicated that ARHGAP9 might be a chemoresistance biomarker in RB, providing insight into potential therapeutic targets for overcoming acquired chemoresistance in RB. These findings can aid in understanding and overcoming chemoresistance during treatment of RB in the clinic.

摘要

背景

视网膜母细胞瘤(RB)是最常见的小儿视网膜肿瘤。在本研究中,为了阐明化疗耐药机制并鉴定 RB 中的潜在生物标志物,我们利用 RNA 测序(RNAseq)技术平台揭示转录组谱,并鉴定长春新碱耐药亚系(Y79/EDR)与亲本 Y79 细胞之间的差异表达基因(DEGs)。

方法

为了检测 Y79/EDR 细胞对 RB 抗肿瘤药物是否有耐药性,我们用依托泊苷、卡铂和长春新碱处理细胞,并通过细胞计数试剂盒-8(CCK-8)进行分析。用 RNAseq 和生物信息学分析 Y79/EDR 和亲本 Y79 细胞,使用 DESeq R 包(1.10.1)对两条细胞系之间的 DEGs 进行全基因组综述。然后,用 KOBAS 软件分析京都基因与基因组百科全书(KEGG)途径中的 DEG 富集。接下来,进行实时定量逆转录聚合酶链反应(real time QRT-PCR)和细胞毒性测定,以实验和功能验证鉴定的候选生物标志物。

结果

Y79/EDR 细胞在不同浓度下对依托泊苷、卡铂和长春新碱表现出耐药性。基于片段每千碱基转录物每百万映射片段(FPKM)的分析,Y79/EDR 细胞中共有 524 个转录物差异表达;其中,Y79/EDR 细胞中 57 个基因下调,467 个基因上调。我们选择候选 DEGs,包括 ARHGAP9、HIST1H4H、RELN、DDIT4、HK2、STC1 和 PFKFB4,进行 real time QRT-PCR 检测 mRNA 表达验证,发现 real time QRT-PCR 确定的表达水平与 RNAseq 数据一致。进一步的研究包括用特异性 siRNA 下调 ARHGAP9,发现 ARHGAP9 改变了 Y79 细胞对依托泊苷和卡铂的细胞敏感性。

结论

我们的初步研究结果为 RB 中长春新碱诱导获得性耐药的转录谱提供了基因组视图。后续研究表明,ARHGAP9 可能是 RB 中的化疗耐药生物标志物,为克服 RB 中获得性化疗耐药提供了潜在的治疗靶点。这些发现有助于理解和克服 RB 治疗过程中的化疗耐药。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ee8/7060629/6ac8bddb2a00/12886_2020_1348_Fig1_HTML.jpg

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