Department of Immunology, Genetics and Pathology, Uppsala University, BMC B11:4, Box 815, 751 08, Uppsala, Sweden.
Science for Life Laboratory in Uppsala, Uppsala University, Uppsala, Sweden.
Sci Rep. 2021 Feb 18;11(1):4076. doi: 10.1038/s41598-021-83541-1.
Transcriptome analysis has mainly relied on analyzing RNA sequencing data from whole cells, overlooking the impact of subcellular RNA localization and its influence on our understanding of gene function, and interpretation of gene expression signatures in cells. Here, we separated cytosolic and nuclear RNA from human fetal and adult brain samples and performed a comprehensive analysis of cytosolic and nuclear transcriptomes. There are significant differences in RNA expression for protein-coding and lncRNA genes between cytosol and nucleus. We show that transcripts encoding the nuclear-encoded mitochondrial proteins are significantly enriched in the cytosol compared to the rest of protein-coding genes. Differential expression analysis between fetal and adult frontal cortex show that results obtained from the cytosolic RNA differ from results using nuclear RNA both at the level of transcript types and the number of differentially expressed genes. Our data provide a resource for the subcellular localization of thousands of RNA transcripts in the human brain and highlight differences in using the cytosolic or the nuclear transcriptomes for expression analysis.
转录组分析主要依赖于分析来自整个细胞的 RNA 测序数据,而忽略了亚细胞 RNA 定位及其对我们理解基因功能和解释细胞中基因表达特征的影响。在这里,我们从小鼠和成人脑组织样本中分离出胞质和核 RNA,并对胞质和核转录组进行了全面分析。蛋白编码基因和 lncRNA 基因在细胞质和细胞核中的 RNA 表达存在显著差异。我们发现编码核编码线粒体蛋白的转录本在细胞质中明显比其他蛋白编码基因丰富。胎儿和成人额叶皮层之间的差异表达分析表明,从细胞质 RNA 获得的结果与使用核 RNA 的结果在转录本类型和差异表达基因数量上都存在差异。我们的数据为人类大脑中数千个 RNA 转录本的亚细胞定位提供了资源,并强调了使用细胞质或核转录组进行表达分析的差异。