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位于2p12上包含共同调控的MRPL19和C2ORF3基因的一个基因座与诵读困难相关。

A locus on 2p12 containing the co-regulated MRPL19 and C2ORF3 genes is associated to dyslexia.

作者信息

Anthoni Heidi, Zucchelli Marco, Matsson Hans, Müller-Myhsok Bertram, Fransson Ingegerd, Schumacher Johannes, Massinen Satu, Onkamo Päivi, Warnke Andreas, Griesemann Heide, Hoffmann Per, Nopola-Hemmi Jaana, Lyytinen Heikki, Schulte-Körne Gerd, Kere Juha, Nöthen Markus M, Peyrard-Janvid Myriam

机构信息

Department of Biosciences and Nutrition, Karolinska Institutet, Huddinge, Sweden.

出版信息

Hum Mol Genet. 2007 Mar 15;16(6):667-77. doi: 10.1093/hmg/ddm009. Epub 2007 Feb 19.

Abstract

DYX3, a locus for dyslexia, resides on chromosome 2p11-p15. We have refined its location on 2p12 to a 157 kb region in two rounds of linkage disequilibrium (LD) mapping in a set of Finnish families. The observed association was replicated in an independent set of 251 German families. Two overlapping risk haplotypes spanning 16 kb were identified in both sample sets separately as well as in a joint analysis. In the German sample set, the odds ratio for the most significantly associated haplotype increased with dyslexia severity from 2.2 to 5.2. The risk haplotypes are located in an intergenic region between FLJ13391 and MRPL19/C2ORF3. As no novel genes could be cloned from this region, we hypothesized that the risk haplotypes might affect long-distance regulatory elements and characterized the three known genes. MRPL19 and C2ORF3 are in strong LD and were highly co-expressed across a panel of tissues from regions of adult human brain. The expression of MRPL19 and C2ORF3, but not FLJ13391, were also correlated with the four dyslexia candidate genes identified so far (DYX1C1, ROBO1, DCDC2 and KIAA0319). Although several non-synonymous changes were identified in MRPL19 and C2ORF3, none of them significantly associated with dyslexia. However, heterozygous carriers of the risk haplotype showed significantly attenuated expression of both MRPL19 and C2ORF3, as compared with non-carriers. Analysis of C2ORF3 orthologues in four non-human primates suggested different evolutionary rates for primates when compared with the out-group. In conclusion, our data support MRPL19 and C2ORF3 as candidate susceptibility genes for DYX3.

摘要

阅读障碍症相关基因座DYX3位于2号染色体的p11 - p15区域。我们通过两轮连锁不平衡(LD)定位,将其在2p12上的位置精确到了一组芬兰家庭中的一个157 kb区域。在另一组独立的251个德国家庭中也重复观察到了这种关联。在两个样本组中以及联合分析中,分别鉴定出了两个跨越16 kb的重叠风险单倍型。在德国家庭样本组中,与阅读障碍症关联最显著的单倍型的优势比随着阅读障碍症严重程度的增加从2.2升至5.2。这些风险单倍型位于FLJ13391和MRPL19/C2ORF3之间的基因间区域。由于无法从该区域克隆出任何新基因,我们推测风险单倍型可能会影响远距离调控元件,并对三个已知基因进行了特征分析。MRPL19和C2ORF3处于强连锁不平衡状态,并且在来自成人大脑区域的一组组织中高度共表达。MRPL19和C2ORF3(而非FLJ13391)的表达也与目前已鉴定出的四个阅读障碍症候选基因(DYX1C1、ROBO1、DCDC2和KIAA0319)相关。尽管在MRPL19和C2ORF3中鉴定出了几个非同义变化,但它们均与阅读障碍症无显著关联。然而,与非携带者相比,风险单倍型的杂合携带者显示出MRPL19和C2ORF3的表达均显著减弱。对四种非人类灵长类动物中C2ORF3直系同源基因的分析表明,与外群相比,灵长类动物的进化速率有所不同。总之,我们的数据支持MRPL19和C2ORF3作为DYX3的候选易感基因。

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