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Microarray-Based Sketches of the HERV Transcriptome Landscape

机译:HERV转录组景观的基于微阵列的草图

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摘要

Human endogenous retroviruses (HERVs) are spread throughout the genome and their long terminal repeats (LTRs) constitute a wide collection of putative regulatory sequences. Phylogenetic similarities and the profusion of integration sites, two inherent characteristics of transposable elements, make it difficult to study individual locus expression in a large-scale approach, and historically apart from some placental and testis-regulated elements, it was generally accepted that HERVs are silent due to epigenetic control. Herein, we have introduced a generic method aiming to optimally characterize individual loci associated with 25-mer probes by minimizing cross-hybridization risks. We therefore set up a microarray dedicated to a collection of 5,573 HERVs that can reasonably be assigned to a unique genomic position. We obtained a first view of the HERV transcriptome by using a composite panel of 40 normal and 39 tumor samples. The experiment showed that almost one third of the HERV repertoire is indeed transcribed. The HERV transcriptome follows tropism rules, is sensitive to the state of differentiation and, unexpectedly, seems not to correlate with the age of the HERV families. The probeset definition within the U3 and U5 regions was used to assign a function to some LTRs (i.e. promoter or polyA) and revealed that (i) autonomous active LTRs are broadly subjected to operational determinism (ii) the cellular gene density is substantially higher in the surrounding environment of active LTRs compared to silent LTRs and (iii) the configuration of neighboring cellular genes differs between active and silent LTRs, showing an approximately 8 kb zone upstream of promoter LTRs characterized by a drastic reduction in sense cellular genes. These gathered observations are discussed in terms of virus/host adaptive strategies, and together with the methods and tools developed for this purpose, this work paves the way for further HERV transcriptome projects.
机译:人内源性逆转录病毒(HERV)遍布整个基因组,其长末端重复序列(LTR)构成了广泛的推定调控序列。系统发生的相似性和整合位点的丰富是转座因子的两个固有特征,这使得很难大规模研究单个基因座的表达,而且从历史上讲,除了某些胎盘和睾丸调节的因子外,人们普遍认为HERV是由于表观遗传控制而沉默。在本文中,我们引入了一种通用方法,旨在通过最大程度地减少交叉杂交风险来优化表征与25-mer探针相关的单个基因座。因此,我们建立了一个专门针对5573个HERV集合的微阵列,可以合理地将其分配给独特的基因组位置。通过使用40个正常和39个肿瘤样本的复合样本,我们获得了HERV转录组的第一个视图。实验表明,确实有将近三分之一的HERV曲目被转录。 HERV转录组遵循嗜性规则,对分化状态敏感,并且出乎意料地似乎与HERV家族的年龄无关。 U3和U5区域内的探针集定义用于为某些LTR(即启动子或polyA)分配功能,并揭示(i)自主活性LTR广泛地受到操作确定性的影响(ii)细胞基因密度显着更高。与静默LTR相比,活跃LTR的周围环境和(iii)活跃LTR和静默LTR之间相邻细胞基因的构型不同,显示出启动子LTR上游大约8 kb区域,其特征是有义细胞基因的急剧减少。这些收集的观察结果将根据病毒/宿主的适应策略进行讨论,并为此目的开发了方法和工具,这项工作为进一步的HERV转录组项目铺平了道路。

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