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Single-neuron sequencing analysis of l1 retrotransposition and somatic mutation in the human brain

机译:人脑中l1逆转座和体细胞突变的单神经元测序分析

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A major unanswered question in neuroscience is whether there exists genomic variability between individual neurons of the brain, contributing to functional diversity or to an unexplained burden of neurological disease. To address this question, we developed a method to amplify genomes of single neurons from human brains. Because recent reports suggest frequent LINE-1 (L1) retrotransposition in human brains, we performed genome-wide L1 insertion profiling of 300 single neurons from cerebral cortex and caudate nucleus of three normal individuals, recovering amp;80% of germline insertions from single neurons. While we find somatic L1 insertions, we estimate amp;0.6 unique somatic insertions per neuron, and most neurons lack detectable somatic insertions, suggesting that L1 is not a major generator of neuronal diversity in cortex and caudate. We then genotyped single cortical cells to characterize the mosaicism of a somatic AKT3 mutation identified in a child with hemimegalencephaly. Single-neuron sequencing allows systematic assessment of genomic diversity in the human brain.
机译:神经科学中一个主要的未解决问题是,大脑各个神经元之间是否存在基因组变异性,从而导致功能多样性或导致无法解释的神经系统疾病负担。为了解决这个问题,我们开发了一种从人脑中扩增单个神经元基因组的方法。因为最近的报道表明人脑中频繁发生LINE-1(L1)逆转,所以我们对三个正常个体的大脑皮层和尾状核中的300个单神经元进行了全基因组L1插入分析,从种系插入中回收了 80%单神经元。当我们发现体细胞L1插入时,我们估计每个神经元的amp≤0.6,并且大多数神经元缺乏可检测的体细胞插入,这表明L1并不是皮质和尾状神经元多样性的主要产生者。然后,我们对单个皮质细胞进行基因分型,以表征在患有半巨脑的儿童中鉴定出的体细胞AKT3突变的镶嵌体。单神经元测序允许系统评估人脑中的基因组多样性。

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