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一种用于具有复杂遗传学的常见癫痫的多基因异质性模型。

A polygenic heterogeneity model for common epilepsies with complex genetics.

作者信息

Dibbens L M, Heron S E, Mulley J C

机构信息

Department of Genetic Medicine, Women's and Children's Hospital, North Adelaide, South Australia, Australia.

出版信息

Genes Brain Behav. 2007 Oct;6(7):593-7. doi: 10.1111/j.1601-183X.2007.00333.x. Epub 2007 Jun 7.

Abstract

Approximately 40% of epilepsy has a complex genetic basis with an unknown number of susceptibility genes. The effect of each susceptibility gene acting alone is insufficient to account for seizure phenotypes, but certain numbers or combinations of variations in susceptibility genes are predicted to raise the level of neuronal hyperexcitability above a seizure threshold for a given individual in a given environment. Identities of susceptibility genes are beginning to be determined, initially by translation of knowledge gained from gene discovery in the monogenic epilepsies. This entrée into idiopathic epilepsies with complex genetics has led to the experimental validation of susceptibility variants in the first few susceptibility genes. The genetic architecture so far emerging from these results is consistent with what we have designated as a polygenic heterogeneity model for the epilepsies with complex genetics.

摘要

大约40%的癫痫具有复杂的遗传基础,涉及数量未知的易感基因。每个单独起作用的易感基因的效应不足以解释癫痫发作表型,但预测在给定环境中,一定数量或特定组合的易感基因变异会使神经元过度兴奋水平升高至给定个体的癫痫发作阈值以上。易感基因的身份开始得以确定,最初是通过将单基因癫痫的基因发现所获知识进行转化。这种对具有复杂遗传学特征的特发性癫痫的研究,已促成了对最初几个易感基因中的易感性变异进行实验验证。目前从这些结果中显现出的遗传结构,与我们为具有复杂遗传学特征的癫痫所定义的多基因异质性模型相一致。

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