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The handedness-associated PCSK6 locus spans an intronic promoter regulating novel transcripts

机译:与旋律相关的PCSK6基因座跨越调控新转录本的内含子启动子

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We recently reported the association of the PCSK6 gene with handedness through a quantitative genome-wide association study (GWAS; P < 0.5 x 10(-8)) for a relative hand skill measure in individuals with dyslexia. PCSK6 activates Nodal, a morphogen involved in regulating left-right body axis determination. Therefore, the GWAS data suggest that the biology underlying the patterning of structural asymmetries may also contribute to behavioural laterality, e.g. handedness. The association is further supported by an independent study reporting a variable number tandem repeat (VNTR) within the same PCSK6 locus to be associated with degree of handedness in a general population cohort. Here, we have conducted a functional analysis of the PCSK6 locus combining further genetic analysis, in silico predictions and molecular assays. We have shown that the previous GWAS signal was not tagging a VNTR effect, suggesting that the two markers have independent effects. We demonstrated experimentally that one of the top GWAS-associated markers, rs11855145, directly alters the binding site for a nuclear factor. Furthermore, we have shown that the predicted regulatory region adjacent to rs11855415 acts as a bidirectional promoter controlling the expression of novel RNA transcripts. These include both an antisense long non-coding RNA (lncRNA) and a short PCSK6 isoform predicted to be coding. This is the first molecular characterization of a handedness-associated locus that supports the role of common variants in non-coding sequences in influencing complex phenotypes through gene expression regulation.
机译:我们最近通过定量全基因组关联研究(GWAS; P <0.5 x 10(-8))报道了PCSK6基因与惯性相关性,用于阅读障碍患者的相对手技能测量。 PCSK6激活Nodal,这是一种调节左右体轴确定的形态发生剂。因此,GWAS数据表明,结构性不对称图案背后的生物学基础也可能助长了行为偏侧性,例如惯用该关联得到一项独立研究的进一步支持,该研究报告了在同一PCSK6基因座中的可变数目串联重复序列(VNTR)与一般人群中的惯性程度相关。在这里,我们对PCSK6基因座进行了功能分析,结合了进一步的遗传分析,计算机模拟预测和分子分析。我们已经表明,先前的GWAS信号未标记VNTR效应,表明这两个标记具有独立的效应。我们通过实验证明,与GWAS相关的最高标记之一rs11855145直接改变了核因子的结合位点。此外,我们已经表明,与rs11855415相邻的预测调控区可作为双向启动子,控制新型RNA转录物的表达。这些既包括反义长非编码RNA(lncRNA),又包括预计编码的短PCSK6同工型。这是与手性相关的基因座的第一个分子表征,其支持非编码序列中的常见变体通过基因表达调控影响复杂表型的作用。

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