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首页> 外文期刊>Graefe's archive for clinical and experimental ophthalmology: Albrecht von Graefes Archiv fur klinische und experimentelle Opthalmologie >Exploration of potential key pathways and genes in multiple ocular cancers through bioinformatics analysis
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Exploration of potential key pathways and genes in multiple ocular cancers through bioinformatics analysis

机译:通过生物信息学分析探讨多发型眼癌潜在关键途径和基因

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Purpose Primary cancers of the eye are common in ocular diseases. The objective of this study was to explore the underlying mechanisms and the potential target genes in multiple ocular cancers by bioinformatics approach. Method These gene expression profiles of GSE24673 (Retinoblastoma), GSE44295 (Uveal melanoma), and GSE103439 (Basal cell carcinoma of the eyelid) were downloaded from Gene Expression Omniniub (GEO) database. The differentially expressed genes (DEGs) in the three gene chips were identified by limma package in R software and gene integration was performed by using "RobustRankAggreg" package. Gene set enrichment analysis (GSEA) and the Gene Ontology (GO) were performed to the selected genes. Moreover, survival analysis was used to estimate uveal melanoma dataset. Results In total, 509 DEGs were identified in GSE24673 (retinoblastoma), 305 DEGs were identified in GSE44295 (uveal melanoma), and 753 DEGs were identified in GSE103439 (basal cell carcinoma of the eyelid). Among those genes, only IGF2BP3 was shared for the three cancer types. A total of 20 DEGs were identified through gene integration (score < 0.05) and IGF2BP3 was ranked the top. Moreover, GO analysis results showed that the 20 DEGs were significantly enriched in WNT signaling pathway, DNA damage, and apoptotic process. GSEA showed that pathways related with cellular respiratory chain are differentially enriched in IGF2BP3 low expression phenotype. Finally, two genes (ID3 and SLC6A15) can predict the overall survival in uveal melanoma patients. Conclusions This findings and results of study showed that the identification of DEGs and key pathways gives a promotion to understand the molecular mechanisms underlying the development of ocular cancers, which contribute to a more comprehensive understanding of cancers of the eye and provide new insights for these studies at gene level.
机译:目的眼睛的主要癌症在眼部疾病中是常见的。本研究的目的是通过生物信息学方法探讨多发性癌症中的潜在机制和潜在的靶基因。方法从基因表达Omniniub(Geo)数据库中,GSE24673(视网膜母细胞瘤),GSE44295(UVEAL melanoma)和GSE103439(眼睑基底细胞癌)的这些基因表达谱进行了下载。通过使用“Robustrankaggreg”封装,通过Rimma封装鉴定三种基因芯片中的差异表达基因(DEGS)。基因设定富集分析(GSEA)和基因本体(GO)对所选基因进行。此外,使用存活分析来估计Uveal黑色素瘤数据集。结果总共在GSE24673中鉴定了509次(视网膜母细胞瘤),在GSE44295(UVEAL黑色素瘤)中鉴定了305次,并在GSE103439中鉴定了753次(眼睑的基底细胞癌)。在这些基因中,仅为三种癌症类型分配IGF2BP3。通过基因整合(得分<0.05)鉴定了总共20次,IGF2BP3排名第一。此外,GO分析结果表明,在WNT信号通路,DNA损伤和凋亡过程中显着富集20°。 GSEA表明,与细胞呼吸链相关的途径差异富集IGF2BP3低表达表型。最后,两个基因(ID3和SLC6A15)可以预测UVEAL黑色素瘤患者的整体存活。结论该研究表明和研究结果表明,探测患者和关键途径给予促进,以了解眼部癌症发育的分子机制,这有助于更全面地了解眼睛癌症,并为这些研究提供新的见解在基因水平。

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