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The Role of SINE-VNTR-Alu (SVA) Retrotransposons in Shaping the Human Genome

机译:SINE-VNTR-Alu(SVA)逆转座子在塑造人类基因组中的作用

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摘要

Retrotransposons can alter the regulation of genes both transcriptionally and post-transcriptionally, through mechanisms such as binding transcription factors and alternative splicing of transcripts. SINE-VNTR-Alu (SVA) retrotransposons are the most recently evolved class of retrotransposable elements, found solely in primates, including humans. SVAs are preferentially found at genic, high GC loci, and have been termed “mobile CpG islands”. We hypothesise that the ability of SVAs to mobilise, and their non-random distribution across the genome, may result in differential regulation of certain pathways. We analysed SVA distribution patterns across the human reference genome and identified over-representation of SVAs at zinc finger gene clusters. Zinc finger proteins are able to bind to and repress SVA function through transcriptional and epigenetic mechanisms, and the interplay between SVAs and zinc fingers has been proposed as a major feature of genome evolution. We describe observations relating to the clustering patterns of both reference SVAs and polymorphic SVA insertions at zinc finger gene loci, suggesting that the evolution of this network may be ongoing in humans. Further, we propose a mechanism to direct future research and validation efforts, in which the interplay between zinc fingers and their epigenetic modulation of SVAs may regulate a network of zinc finger genes, with the potential for wider transcriptional consequences.
机译:逆转座子可以通过诸如结合转录因子和转录物的可变剪接的机制改变转录和转录后基因的调控。 SINE-VNTR-Alu(SVA)逆转座子是最近进化的一类逆转座元件,仅在灵长类动物(包括人)中发现。 SVAs优先在基因的高GC位点发现,被称为“移动CpG岛”。我们假设SVA动员的能力及其在基因组中的非随机分布可能导致某些途径的差异调节。我们分析了人类参考基因组中的SVA分布模式,并确定了在锌指基因簇上SVA的过度表达。锌指蛋白能够通过转录和表观遗传机制结合并抑制SVA功能,SVA和锌指之间的相互作用已被认为是基因组进化的主要特征。我们描述了有关参考手指SVA和锌指基因位点的多态性SVA插入的聚类模式的观察结果,表明该网络的进化可能正在人类中进行。此外,我们提出了一种指导未来研究和验证工作的机制,其中锌指及其SVA的表观遗传调控之间的相互作用可能调节锌指基因的网络,并可能产生更广泛的转录结果。

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