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微小RNA的转录后修饰经历广泛改变,形成独特的肺腺癌异构体组。

Post-Transcriptional Modifications to miRNAs Undergo Widespread Alterations, Creating a Unique Lung Adenocarcinoma IsomiRome.

作者信息

Cohn David E, Souza Vanessa G P, Forder Aisling, Telkar Nikita, Stewart Greg L, Lam Wan L

机构信息

Department of Integrative Oncology, BC Cancer Research Institute, Vancouver, BC V5Z 1L3, Canada.

British Columbia Children's Hospital Research Institute, Vancouver, BC V5Z 4H4, Canada.

出版信息

Cancers (Basel). 2024 Sep 28;16(19):3322. doi: 10.3390/cancers16193322.

Abstract

BACKGROUND

MicroRNAs (miRNAs) modulate the expression of oncogenes and tumor suppressor genes, functioning as significant epigenetic regulators in cancer. IsomiRs are miRNA molecules that have undergone small modifications during miRNA processing. These modifications can alter an isomiR's binding stability with mRNA targets, and certain isomiRs have been implicated in the development of specific cancers. Still, the isomiRomes of many tissues, including the lung, have not been characterized; Methods: In this study, we analyzed small RNA sequencing data for three cohorts of lung adenocarcinoma (LUAD) and adult non-malignant lung (ANL) samples.

RESULTS

We quantified isomiR expression and found 16 A-to-I edited isomiRs expressed in multiple cohorts, as well as 213 5' isomiRs, 128 3' adenylated isomiRs, and 100 3' uridylated isomiRs. Rates of A-to-I editing at editing hotspots correlated with mRNA expression of the editing enzymes ADAR and ADARB1, which were both observed to be deregulated in LUAD. LUAD samples displayed lower overall rates of A-to-I editing and 3' adenylation than ANL samples. Support vector machines and random forest models were trained on one cohort to distinguish ANL and stage I/II LUAD samples using reads per million (RPM) and frequency data for different types of isomiRs. Models trained on A-to-I editing rates at editing hotspots displayed high accuracy when tested on the other two cohorts and compared favorably to classifiers trained on miRNA expression alone; Conclusions: We have identified isomiRs in the human lung and found that their expression differs between non-malignant and tumor tissues, suggesting they hold potential as cancer biomarkers.

摘要

背景

微小RNA(miRNA)可调节癌基因和肿瘤抑制基因的表达,在癌症中作为重要的表观遗传调节因子发挥作用。异源微小RNA(isomiR)是在miRNA加工过程中发生微小修饰的miRNA分子。这些修饰可改变isomiR与mRNA靶标的结合稳定性,并且某些isomiR与特定癌症的发生发展有关。然而,包括肺在内的许多组织的isomiR组尚未得到表征。方法:在本研究中,我们分析了三组肺腺癌(LUAD)和成人非恶性肺(ANL)样本的小RNA测序数据。

结果

我们对isomiR表达进行了定量,发现16种A-to-I编辑的isomiR在多个队列中表达,以及213种5'异源异构体、128种3'腺苷酸化异源异构体和100种3'尿苷酸化异源异构体。编辑热点处的A-to-I编辑率与编辑酶ADAR和ADARB1的mRNA表达相关,这两种酶在LUAD中均被观察到失调。LUAD样本的A-to-I编辑和3'腺苷酸化总体率低于ANL样本。使用支持向量机和随机森林模型在一个队列上进行训练,以使用不同类型isomiR的每百万读数(RPM)和频率数据区分ANL和I/II期LUAD样本。在编辑热点处基于A-to-I编辑率训练的模型在其他两个队列上进行测试时显示出高精度,并且与仅基于miRNA表达训练的分类器相比具有优势。结论:我们在人肺中鉴定出了isomiR,并发现它们在非恶性组织和肿瘤组织中的表达不同,这表明它们具有作为癌症生物标志物的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6582/11476290/5bf55698b247/cancers-16-03322-g001.jpg

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