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首页> 外文期刊>Trends in Genetics >Genetics of complex neurological disease: challenges and opportunities for modeling epilepsy in mice and rats
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Genetics of complex neurological disease: challenges and opportunities for modeling epilepsy in mice and rats

机译:复杂神经系统疾病的遗传学:在小鼠和大鼠中建模癫痫的挑战和机遇

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摘要

Currently, ~20 genetic variants are known to cause Mendelian forms of human epilepsy, leaving a vast heritability undefined. Rodent models for genetically complex epilepsy have been studied for many years, but only recently have strong candidate genes emerged, including Cacna1g in the GAERS rat model of absence epilepsy and Kcnj10 in the low seizure threshold of DBA/2 mice. In parallel, a growing number of mouse mutations studied on multiple strain backgrounds reveal the impact of genetic modifiers on seizure severity, incidence or form - perhaps mimicking the complexity seen in humans. The field of experimental genetics in rodents is poised to study discrete epilepsy mutations on a diverse choice of strain backgrounds to develop better models and identify modifiers. But, it must find the right balance between embracing the strain diversity available, with the ability to detect and characterize genetic effects. Using alternative strain backgrounds when studying epilepsy mutations will enhance the modeling of epilepsy as a complex genetic disease.
机译:目前,已知约有20种遗传变异会导致孟德尔形式的人类癫痫,但尚不确定巨大的遗传力。遗传复杂癫痫的啮齿动物模型已经研究了很多年,但是直到最近才出现了强大的候选基因,包括无癫痫的GAERS大鼠模型中的Cacna1g和DBA / 2小鼠癫痫发作阈值低的Kcnj10。同时,在多种菌株背景下研究的越来越多的小鼠突变揭示了遗传修饰剂对癫痫发作的严重程度,发生率或形式的影响-可能模仿了人类所见的复杂性。啮齿动物的实验遗传学领域准备在多种不同的菌株背景下研究离散的癫痫突变,以开发更好的模型并鉴定修饰物。但是,它必须在拥抱可用的菌株多样性与检测和表征遗传效应的能力之间找到适当的平衡。在研究癫痫突变时使用替代菌株背景将增强癫痫作为复杂遗传疾病的建模。

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