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在15q11 - q13母系表达区域进行的紧密连锁不平衡图谱分析为自闭症的关联提供了证据。

Dense linkage disequilibrium mapping in the 15q11-q13 maternal expression domain yields evidence for association in autism.

作者信息

Nurmi E L, Amin T, Olson L M, Jacobs M M, McCauley J L, Lam A Y, Organ E L, Folstein S E, Haines J L, Sutcliffe J S

机构信息

Department of Molecular Physiology and Biophysics, Program in Human Genetics, Vanderbilt University, Nashville, TN 37232-0615, USA.

出版信息

Mol Psychiatry. 2003 Jun;8(6):624-34, 570. doi: 10.1038/sj.mp.4001283.

Abstract

Autism [MIM 209850] is a neurodevelopmental disorder exhibiting a complex genetic etiology with clinical and locus heterogeneity. Chromosome 15q11-q13 has been proposed to harbor a gene for autism susceptibility based on (1) maternal-specific chromosomal duplications seen in autism and (2) positive evidence for linkage disequilibrium (LD) at 15q markers in chromosomally normal autism families. To investigate and localize a potential susceptibility variant, we developed a dense single nucleotide polymorphism (SNP) map of the maternal expression domain in proximal 15q. We analyzed 29 SNPs spanning the two known imprinted, maternally expressed genes in the interval (UBE3A and ATP10C) and putative imprinting control regions. With a marker coverage of 1/10 kb in coding regions and 1/15 kb in large 5' introns, this map was employed to thoroughly dissect LD in autism families. Two SNPs within ATP10C demonstrated evidence for preferential allelic transmission to affected offspring. The signal detected at these SNPs was stronger in singleton families, and an adjacent SNP demonstrated transmission distortion in this subset. All SNPs showing allelic association lie within islands of sequence homology between human and mouse genomes that may be part of an ancestral haplotype containing a functional susceptibility allele. The region was further explored for recombination hot spots and haplotype blocks to evaluate haplotype transmission. Five haplotype blocks were defined within this region. One haplotype within ATP10C displayed suggestive evidence for preferential transmission. Interpretation of these data will require replication across data sets, evaluation of potential functional effects of associated alleles, and a thorough assessment of haplotype transmission within ATP10C and neighboring genes. Nevertheless, these findings are consistent with the presence of an autism susceptibility locus in 15q11-q13.

摘要

自闭症[MIM 209850]是一种神经发育障碍,具有复杂的遗传病因,存在临床和基因座异质性。基于以下两点,有人提出15号染色体q11-q13区域含有自闭症易感基因:(1)在自闭症患者中发现的母系特异性染色体重复;(2)在染色体正常的自闭症家系中,15q标记处存在连锁不平衡(LD)的阳性证据。为了研究和定位潜在的易感变异,我们构建了15q近端母系表达域的密集单核苷酸多态性(SNP)图谱。我们分析了29个SNP,这些SNP跨越该区间内两个已知的印记、母系表达基因(UBE3A和ATP10C)以及假定的印记控制区域。该图谱在编码区的标记覆盖度为1/10 kb,在大的5'内含子中的覆盖度为1/15 kb,用于全面剖析自闭症家系中的LD。ATP10C内的两个SNP显示出向受影响后代优先等位基因传递的证据。在这些SNP处检测到的信号在单人家系中更强,并且一个相邻的SNP在该亚组中显示出传递扭曲。所有显示等位基因关联的SNP都位于人类和小鼠基因组之间的序列同源性岛内,这些岛可能是包含功能性易感等位基因的祖先单倍型的一部分。进一步探索该区域的重组热点和单倍型块以评估单倍型传递。在该区域内定义了五个单倍型块。ATP10C内的一个单倍型显示出优先传递的暗示性证据。对这些数据的解释需要跨数据集进行重复验证、评估相关等位基因的潜在功能效应,以及对ATP10C和邻近基因内的单倍型传递进行全面评估。然而,这些发现与15q11-q13中存在自闭症易感基因座是一致的。

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