Sahni Hemant, Ross Susan, Barbarulo Alessandro, Solanki Anisha, Lau Ching-In, Furmanski Anna, Saldaña José Ignacio, Ono Masahiro, Hubank Mike, Barenco Martino, Crompton Tessa
Institute of Child Health, University College London, London WC1N 1EH, UK.
Oncotarget. 2015 Oct 6;6(30):28646-60. doi: 10.18632/oncotarget.5796.
Developing thymocytes require pre-TCR signalling to differentiate from CD4-CD8- double negative to CD4+CD8+ double positive cell. Here we followed the transcriptional response to pre-TCR signalling in a synchronised population of differentiating double negative thymocytes. This time series analysis revealed a complex transcriptional response, in which thousands of genes were up and down-regulated before changes in cell surface phenotype were detected. Genome-wide measurement of RNA degradation of individual genes showed great heterogeneity in the rate of degradation between different genes. We therefore used time course expression and degradation data and a genome wide transcriptional modelling (GWTM) strategy to model the transcriptional response of genes up-regulated on pre-TCR signal transduction. This analysis revealed five major temporally distinct transcriptional activities that up regulate transcription through time, whereas down-regulation of expression occurred in three waves. Our model thus placed known regulators in a temporal perspective, and in addition identified novel candidate regulators of thymocyte differentiation.
正在发育的胸腺细胞需要前T细胞受体(pre-TCR)信号传导才能从CD4-CD8-双阴性细胞分化为CD4+CD8+双阳性细胞。在此,我们追踪了同步化的分化双阴性胸腺细胞群体对pre-TCR信号传导的转录反应。这个时间序列分析揭示了一个复杂的转录反应,其中在检测到细胞表面表型变化之前,数千个基因被上调和下调。对单个基因RNA降解的全基因组测量显示,不同基因之间的降解速率存在很大差异。因此,我们使用时间进程表达和降解数据以及全基因组转录建模(GWTM)策略,对pre-TCR信号转导上调基因的转录反应进行建模。该分析揭示了五个主要的时间上不同的转录活动,它们随着时间的推移上调转录,而表达的下调则以三个波次发生。我们的模型因此将已知的调节因子置于时间视角中,此外还鉴定出了胸腺细胞分化的新型候选调节因子。