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首页> 外文期刊>Nucleic Acids Research >Human population-specific gene expression and transcriptional network modification with polymorphic transposable elements
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Human population-specific gene expression and transcriptional network modification with polymorphic transposable elements

机译:具有多态转换元素的人口特异性基因表达和转录网络改性

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摘要

Transposable element (TE) derived sequences are known to contribute to the regulation of the human genome. The majority of known TE-derived regulatory sequences correspond to relatively ancient insertions, which are fixed across human populations. The extent to which human genetic variation caused by recent TE activity leads to regulatory polymorphisms among populations has yet to be thoroughly explored. In this study, we searched for associations between polymorphic TE (polyTE) loci and human gene expression levels using an expression quantitative trait loci (eQTL) approach. We compared locusspecific polyTE insertion genotypes to B cell gene expression levels among 445 individuals from 5 human populations. Numerous human polyTE loci correspond to both cis and trans eQTL, and their regulatory effects are directly related to cell type-specific function in the immune system. PolyTE loci are associated with differences in expression between European and African population groups, and a single polyTE loci is indirectly associated with the expression of numerous genes via the regulation of the B cell-specific transcription factor PAX5. The polyTEgene expression associations we found indicate that human TE genetic variation can have important phenotypic consequences. Our results reveal that TEeQTL are involved in population-specific gene regulation as well as transcriptional network modification.
机译:已知转移元素(TE)衍生的序列有助于对人类基因组的调节有助于调节。大多数已知的TE衍生的调节序列对应于相对古老的插入,其跨越人口。最近的TE活性引起的人类遗传变异导致人口中的监管多态性尚未彻底探索。在这项研究中,我们使用表达定量特性基因座(EQTL)方法搜索多晶态TE(Polyte)基因座和人基因表达水平之间的关联。我们将LocusSpecific的Polyte插入基因型与来自5例人群的445个个体中的B细胞基因表达水平进行比较。许多人的Polyte Loci对应于CIS和反式EQT1,其调节效应与免疫系统中的细胞类型特异性直接相关。 Polyte Loci与欧洲和非洲人口组之间表达的差异有关,并且单个Polyte Loci通过调节B细胞特异性转录因子pax5的众多基因的表达间接相关。我们发现的聚四指表达关联表明人类TE遗传变异可以具有重要的表型后果。我们的研究结果表明,TEEQTL参与人口特异性基因调节以及转录网络修改。

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