Kalef-Ezra Ester, Turan Zeliha Gozde, Perez-Rodriguez Diego, Bomann Ida, Behera Sairam, Morley Caoimhe, Scholz Sonja W, Jaunmuktane Zane, Demeulemeester Jonas, Sedlazeck Fritz J, Proukakis Christos
Department of Clinical and Movement Neurosciences, UCL Queen Square Institute of Neurology, London, UK.
Aligning Science Across Parkinson's (ASAP) Collaborative Research Network, Chevy Chase, MD, 20815.
bioRxiv. 2023 Nov 21:2023.08.07.552289. doi: 10.1101/2023.08.07.552289.
The presence of somatic mutations, including copy number variants (CNVs), in the brain is well recognized. Comprehensive study requires single-cell whole genome amplification, with several methods available, prior to sequencing. We compared PicoPLEX with two recent adaptations of multiple displacement amplification (MDA): primary template-directed amplification (PTA) and droplet MDA, across 93 human brain cortical nuclei. We demonstrated different properties for each, with PTA providing the broadest amplification, PicoPLEX the most even, and distinct chimeric profiles. Furthermore, we performed CNV calling on two brains with multiple system atrophy and one control brain using different reference genomes. We found that 38% of brain cells have at least one Mb-scale CNV, with some supported by bulk sequencing or single-cells from other brain regions. Our study highlights the importance of selecting whole genome amplification method and reference genome for CNV calling, while supporting the existence of somatic CNVs in healthy and diseased human brain.
大脑中存在体细胞突变,包括拷贝数变异(CNV),这一点已得到广泛认可。在测序之前,全面的研究需要单细胞全基因组扩增,目前有几种方法可供选择。我们在93个人类大脑皮质细胞核中,将PicoPLEX与多重置换扩增(MDA)的两种最新改进方法:初级模板导向扩增(PTA)和液滴MDA进行了比较。我们证明了每种方法都有不同的特性,PTA提供最广泛的扩增,PicoPLEX提供最均匀的扩增,并且具有独特的嵌合图谱。此外,我们使用不同的参考基因组,对两个患有多系统萎缩的大脑和一个对照大脑进行了CNV检测。我们发现38%的脑细胞至少有一个兆碱基规模的CNV,其中一些得到了来自其他脑区的大量测序或单细胞测序的支持。我们的研究强调了选择全基因组扩增方法和参考基因组进行CNV检测的重要性,同时支持健康和患病人类大脑中体细胞CNV的存在。