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READ1 和 KIAA0319 基因变异在发展性阅读障碍中的作用:检验主要和交互作用。

The role of READ1 and KIAA0319 genetic variations in developmental dyslexia: testing main and interactive effects.

机构信息

Child Psychopathology Unit, Scientific Institute, IRCCS Eugenio Medea, Bosisio Parini, Italy.

Bioinformatics, Scientific Institute, IRCCS Eugenio Medea, Bosisio Parini, Italy.

出版信息

J Hum Genet. 2017 Nov;62(11):949-955. doi: 10.1038/jhg.2017.80. Epub 2017 Aug 3.

Abstract

Developmental dyslexia (DD) is a complex heritable condition characterized by impaired reading abilities. Two well-replicated candidate risk factors are as follows: (1) regulatory element associated with dyslexia 1 (READ1), which is located in intron 2 of DCDC2 and acts as a binding site for protein regulation of DCDC2 expression; and (2) a three-single-nucleotide polymorphism risk haplotype spanning KIAA0319. Phylogenetically similar READ1 variants showed synergistic effects with the KIAA0319 risk haplotype on reading-related phenotypes in a general population sample. Here we examine the association between different allele classes in READ1, the KIAA0319 risk haplotype and reading-related traits in a cohort of 368 Italian children with DD and their siblings (n=266) by testing both main and non-additive effects. We replicated the deleterious main effects upon both reading accuracy and speed exerted by the longer READ1 alleles. We further supported the interdependence through non-additive, possibly antagonistic, effects between READ1 and the KIAA0319 risk haplotype on reading accuracy. By suggesting the presence of common biological processes underlying reading (dis)ability, these findings represent initial support for a generalist effect of the non-additive interdependence between READ1 and the KIAA0319 risk haplotype. Moreover, our results confirm that using as much information as possible about genetic interdependence among dyslexia-candidate genes can help in clinically assessing the individual risk for DD.

摘要

发展性阅读障碍(DD)是一种复杂的遗传性疾病,其特征是阅读能力受损。两个经过充分验证的候选风险因素如下:(1)与阅读障碍 1(READ1)相关的调节元件,位于 DCDC2 的内含子 2 中,作为 DCDC2 表达的蛋白质调节结合位点;(2)跨越 KIAA0319 的三个单核苷酸多态性风险单倍型。系统发育上相似的 READ1 变体与 KIAA0319 风险单倍型在一般人群样本中的阅读相关表型上表现出协同作用。在这里,我们通过测试主要和非加性效应,在 368 名意大利 DD 儿童及其兄弟姐妹(n=266)的队列中检查 READ1 中的不同等位基因类别、KIAA0319 风险单倍型与阅读相关特征之间的关联。我们复制了较长的 READ1 等位基因对阅读准确性和速度的有害主要效应。我们通过 READ1 和 KIAA0319 风险单倍型之间的非加性、可能拮抗的效应,进一步支持了它们之间的相互依赖关系对阅读准确性的影响。通过表明阅读(障碍)能力的基础存在共同的生物学过程,这些发现为 READ1 和 KIAA0319 风险单倍型之间非加性相互依赖的普遍影响提供了初步支持。此外,我们的研究结果证实,尽可能多地利用与阅读候选基因之间遗传相互依赖的信息可以帮助临床评估 DD 的个体风险。

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