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Exploration of small RNA-seq data for small non-coding RNAs in Human Colorectal Cancer

机译:探索人类结肠直肠癌中非编码小RNA的小RNA序列数据

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Background: Improved healthcare and recent breakthroughs in technology have substantially reduced cancer mortality rates worldwide. Recent advancements in next-generation sequencing (NGS) have allowed genomic analysis of the human transcriptome. Now, using NGS we can further look into small non-coding regions of RNAs (sncRNAs) such as microRNAs (miRNAs), Piwi-interacting-RNAs (piRNAs), long non-coding RNAs (lncRNAs), and small nuclearucleolar RNAs (sn/snoRNAs) among others. Recent studies looking at sncRNAs indicate their role in important biological processes such as cancer progression and predict their role as biomarkers for disease diagnosis, prognosis, and therapy. Results: In the present study, we data mined publically available small RNA sequencing data from colorectal tissue samples of eight matched patients (benign, tumor, and metastasis) and remapped the data for various small RNA annotations. We identified aberrant expression of 13 miRNAs in tumor and metastasis specimens [tumor vs benign group (19 miRNAs) and metastasis vs benign group (38 miRNAs)] of which five were upregulated, and eight were downregulated, during disease progression. Pathway analysis of aberrantly expressed miRNAs showed that the majority of miRNAs involved in colon cancer were also involved in other cancers. Analysis of piRNAs revealed six to be over-expressed in the tumor vs benign cohort and 24 in the metastasis vs benign group. Only two piRNAs were shared between the two cohorts. Examining other types of small RNAs [sn/snoRNAs, mt_rRNA, miscRNA, nonsense mediated decay (NMD), and rRNAs] identified 15 sncRNAs in the tumor vs benign group and 104 in the metastasis vs benign group, with only four others being commonly expressed. Conclusion: In summary, our comprehensive analysis on publicly available small RNA-seq data identified multiple differentially expressed sncRNAs during colorectal cancer progression at different stages compared to normal colon tissue. We speculate that deciphering and validating the roles of sncRNAs may prove useful in colorectal cancer prognosis, diagnosis, and therapy.
机译:背景:医疗保健的改善和技术的最新突破已大大降低了全球癌症死亡率。下一代测序(NGS)的最新进展已允许对人类转录组进行基因组分析。现在,使用NGS,我们可以进一步研究RNA(sncRNA)的小的非编码区域,例如microRNA(miRNA),Piwi相互作用RNA(piRNA),长的非编码RNA(lncRNA)和小的核/核仁RNA。 (sn / snoRNA)等。最近研究sncRNA的研究表明它们在重要的生物学过程(例如癌症进展)中的作用,并预测其作为疾病诊断,预后和治疗的生物标志物的作用。结果:在本研究中,我们从八名匹配患者(良性,肿瘤和转移)的结直肠组织样本中提取了可公开获得的小RNA测序数据,并重新映射了各种小RNA注释数据。我们确定了在肿瘤和转移标本中的13个miRNA的异常表达[肿瘤与良性组(19个miRNA)和转移与良性组(38个miRNA)],其中有5个在疾病发展过程中被上调,八个被下调。异常表达的miRNA的通路分析表明,参与结肠癌的大多数miRNA也参与了其他癌症。对piRNA的分析显示,与良性队列相比,在肿瘤中有6个过表达,而与良性转移组相比,在转移中有24个过表达。两个队列之间仅共享两个piRNA。检查其他类型的小RNA [sn / snoRNA,mt_rRNA,miscRNA,无义介导的衰变(NMD)和rRNA],在肿瘤与良性组中鉴定出15种sncRNA,在转移与良性组中鉴定出104种,通常仅表达四种。结论:总而言之,我们对可公开获得的小RNA-seq数据的综合分析确定了与正常结肠组织相比在大肠癌进展过程中不同阶段的多个差异表达的sncRNA。我们推测,破译和验证sncRNA的作用可能证明对大肠癌的预后,诊断和治疗有用。

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