Characterization of conditions for competing endogenous RNA regulation in GBM

Yu-Chiao Chiu, E. Chuang, T. Hsiao, Yidong Chen
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Abstract

Summary form only given. MicroRNAs (miRNAs) are short non-coding RNAs with the average length of 22 nucleotides. They are known to induce mRNA degradation or suppression of translation by complementarily binding to 3' untranslated regions (3' UTRs) of target mRNA transcripts. Recently, an alternative mechanism through which miRNAs participate in gene regulation was postulated and experimentally validated, namely the competing endogenous RNAs (ceRNAs). By competing for a limited pool of common targeting miRNAs (miRNA programs; miRP), pairs of genes (ceRNAs) sharing, fully or partially, identical miRNAs binding sites can “talk” to each other: when one ceRNA is up-regulated (or down-regulated) in cells, it attracts (or releases) the targeting miRNAs away from (or toward) the other ceRNA, and in turn have protective (or harmful) effects on expression of the other ceRNA. Based on in silico and in vitro analysis, recent reports suggested the dynamic and condition-specific properties of ceRNA regulation. The essential factors involved in ceRNA regulation include size of miRP, number of miRP binding sites, expression level of miRP, and expression level of ceRNAs. For better characterizing the optimal conditions for ceRNA regulation, in the present study we aim to confer how essential factors determine strength of ceRNA regulation in vivo, by analyzing TCGA datasets of glioblastoma multiforme (GBM) patients with 491 tumor samples profiled with paired miRNA and gene expression. Based on the definition that two genes sharing any number of common targeting miRNAs as a putative ceRNA pair, and by utilizing TargetScan algorithm, we identified 47,451,423 putative ceRNA pairs, involving 10,872 ceRNAs (genes). Pairwise correlation coefficients of gene expression profiles were then computed for each of the putative ceRNA pairs, and then the CDF. Varying size of miRP, for example, generated multiple CDFs, and then the goodness-of-fit was performed for pinpointing the essential factors and optimal conditions for intensified ceRNA activity. Our analysis results demonstrated that increased size of miRPs as well as the abundance of miRP binding sites stabilize ceRNA activity and strengthen coexpression of ceRNA pairs. Furthermore, the expression levels of both miRPs and ceRNAs affect ceRNA activity and lead to statistically significant differences in distributions of correlation coefficients. Taken together, the results indicated that ceRNA regulation depends on states of the essential factors and thus may involve complex and dynamic processes in vivo. Our findings bring biological insights into complex ceRNA crosstalk in glioblastoma multiforme and contribute to further unveiling complex mechanism governing ceRNA regulation.
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GBM中竞争内源RNA调控条件的表征
只提供摘要形式。MicroRNAs (miRNAs)是一种短的非编码rna,平均长度为22个核苷酸。已知它们通过与目标mRNA转录物的3'非翻译区(3' UTRs)互补结合,诱导mRNA降解或抑制翻译。最近,miRNAs参与基因调控的另一种机制被假设和实验验证,即竞争内源性rna (ceRNAs)。通过竞争有限的共同靶向miRNA (miRNA程序;miRP),完全或部分共享相同mirna结合位点的基因对(ceRNA)可以相互“交谈”:当细胞中一个ceRNA被上调(或下调)时,它吸引(或释放)靶向mirna远离(或朝向)另一个ceRNA,反过来对另一个ceRNA的表达具有保护(或有害)作用。基于硅和体外分析,最近的报道提出了ceRNA调控的动态和条件特异性。参与ceRNA调控的关键因素包括miRP的大小、miRP结合位点的数量、miRP的表达水平和ceRNA的表达水平。为了更好地表征ceRNA调控的最佳条件,在本研究中,我们旨在通过分析491例多形性胶质母细胞瘤(GBM)患者的TCGA数据集,通过配对miRNA和基因表达分析,确定体内ceRNA调控强度的关键因素。基于两个基因共享任意数量的共同靶向mirna作为假定的ceRNA对的定义,利用TargetScan算法,我们确定了47,451,423对假定的ceRNA对,涉及10,872个ceRNA(基因)。然后计算每个假定的ceRNA对的基因表达谱的两两相关系数,然后计算CDF。例如,不同大小的miRP会产生多个CDFs,然后进行拟合优度,以确定增强ceRNA活性的基本因素和最佳条件。我们的分析结果表明,miRPs大小的增加以及miRP结合位点的丰富度稳定了ceRNA的活性,增强了ceRNA对的共表达。此外,miRPs和ceRNA的表达水平都会影响ceRNA的活性,导致相关系数的分布差异具有统计学意义。综上所述,结果表明,ceRNA的调控依赖于必需因子的状态,因此可能涉及体内复杂的动态过程。我们的发现为多形性胶质母细胞瘤中复杂的ceRNA串扰提供了生物学见解,并有助于进一步揭示ceRNA调控的复杂机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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