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自闭症中的核基因组和线粒体基因组缺陷。

Nuclear and mitochondrial genome defects in autisms.

作者信息

Smith Moyra, Spence M Anne, Flodman Pamela

机构信息

Department of Pediatrics, University of California-Irvine, Irvine, CA 92697, USA.

出版信息

Ann N Y Acad Sci. 2009 Jan;1151:102-32. doi: 10.1111/j.1749-6632.2008.03571.x.

Abstract

In this review we will evaluate evidence that altered gene dosage and structure impacts neurodevelopment and neural connectivity through deleterious effects on synaptic structure and function, and evidence that the latter are key contributors to the risk for autism. We will review information on alterations of structure of mitochondrial DNA and abnormal mitochondrial function in autism and indications that interactions of the nuclear and mitochondrial genomes may play a role in autism pathogenesis. In a final section we will present data derived using Affymetrix SNP 6.0 microarray analysis of DNA of a number of subjects and parents recruited to our autism spectrum disorders project. We include data on two sets of monozygotic twins. Collectively these data provide additional evidence of nuclear and mitochondrial genome imbalance in autism and evidence of specific candidate genes in autism. We present data on dosage changes in genes that map on the X chromosomes and the Y chromosome. Precise analyses of Y located genes are often difficult because of the high degree of homology of X- and Y-related genes. However, continued efforts to analyze the latter are important, given the consistent evidence for a 4:1 ratio of males to females affected by autism. It is also important to consider whether environmental factors play a role in generating the nuclear and mitochondrial genomic instability we have observed. The study of autism will benefit from a move to analysis of pathways and multigene clusters for identification of subtypes that share a specific genetic etiology.

摘要

在本综述中,我们将评估以下证据:基因剂量和结构的改变通过对突触结构和功能产生有害影响,进而影响神经发育和神经连接;以及后者是自闭症风险的关键因素的证据。我们将回顾关于自闭症中线粒体DNA结构改变和线粒体功能异常的信息,以及核基因组与线粒体基因组相互作用可能在自闭症发病机制中起作用的迹象。在最后一部分,我们将展示使用Affymetrix SNP 6.0芯片对参与我们自闭症谱系障碍项目的众多受试者及其父母的DNA进行分析得出的数据。我们纳入了两组同卵双胞胎的数据。这些数据共同提供了自闭症中核基因组和线粒体基因组失衡的更多证据,以及自闭症中特定候选基因的证据。我们展示了位于X染色体和Y染色体上基因的剂量变化数据。由于X相关基因和Y相关基因高度同源,对位于Y染色体上的基因进行精确分析往往很困难。然而,鉴于自闭症患者中男性与女性的比例为4:1这一一致证据,持续分析后者很重要。考虑环境因素是否在我们观察到的核基因组和线粒体基因组不稳定性的产生中起作用也很重要。自闭症的研究将受益于转向对通路和多基因簇的分析,以识别具有特定遗传病因的亚型。

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