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聚焦癌症通路分析揭示了视网膜母细胞瘤的独特治疗靶点。

Focused cancer pathway analysis revealed unique therapeutic targets in retinoblastoma.

机构信息

Department of Molecular Genetics, Aravind Medical Research Foundation, 1, Anna Nagar, Madurai, Tamil Nadu, 625 020, India.

Department of Molecular Biology, Aravind Medical Research Foundation - Affiliated to Alagappa University, Karaikudi, Tamil Nadu, 630003, India.

出版信息

Med Oncol. 2024 Jun 4;41(7):168. doi: 10.1007/s12032-024-02391-9.

Abstract

Retinoblastoma (RB) is a pediatric cancer of the eye that occurs in 1/15000 live births worldwide. Albeit RB is initiated by the inactivation of RB1 gene, the disease progression relies largely on transcriptional alterations. Therefore, evaluating gene expression is vital to unveil the therapeutic targets in RB management. In this study, we employed an RT Profiler™ PCR array for a focused analysis of 84 cancer-specific genes in RB. An interaction network was built with gene expression data to identify the dysregulated pathways in RB. The key transcript alterations identified in 13 tumors by RT Profiler™ PCR array was further validated in 15 tumors by independent RT-qPCR. Out of 84 cancer-specific genes, 68 were dysregulated in RB tumors. Among the 68 genes, 23 were chosen for further analysis based on statistical significance and abundance across multiple tumors. Pathway analysis of altered genes showed the frequent perturbations of cell cycle, angiogenesis and apoptotic pathways in RB. Notably, upregulation of MCM2, MKI67, PGF, WEE1, CDC20 and downregulation of COX5A were found in all the tumors. Western blot confirmed the dysregulation of identified targets at protein levels as well. These alterations were more prominent in invasive RB, correlating with the disease pathogenesis. Our molecular analysis thus identified the potential therapeutic targets for improving retinoblastoma treatment. We also suggest that PCR array can be used as a tool for rapid and cost-effective gene expression analysis.

摘要

视网膜母细胞瘤(RB)是一种儿童期眼部癌症,全球每 15000 例活产中就会发生一例。尽管 RB 是由 RB1 基因失活引起的,但疾病的进展在很大程度上依赖于转录改变。因此,评估基因表达对于揭示 RB 治疗中的靶点至关重要。在这项研究中,我们使用了 RT Profiler™ PCR 阵列对 84 个癌症特异性基因在 RB 中的表达进行了集中分析。我们构建了一个基因表达数据的相互作用网络,以确定 RB 中失调的通路。通过 RT Profiler™ PCR 阵列在 13 个肿瘤中鉴定的关键转录本改变,进一步通过独立的 RT-qPCR 在 15 个肿瘤中进行了验证。在 84 个癌症特异性基因中,有 68 个在 RB 肿瘤中失调。在这 68 个基因中,根据统计学意义和多个肿瘤中的丰度,选择了 23 个基因进行进一步分析。改变基因的通路分析显示,RB 中细胞周期、血管生成和凋亡途径经常受到干扰。值得注意的是,所有肿瘤中均发现 MCM2、MKI67、PGF、WEE1、CDC20 上调和 COX5A 下调。Western blot 也证实了鉴定的靶蛋白在蛋白水平上的失调。这些改变在侵袭性 RB 中更为明显,与疾病发病机制相关。我们的分子分析因此确定了改善视网膜母细胞瘤治疗的潜在治疗靶点。我们还建议 PCR 阵列可作为一种快速且具有成本效益的基因表达分析工具。

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