Resztak Justyna A, Wei Julong, Zilioli Samuele, Sendler Edward, Alazizi Adnan, Mair-Meijers Henriette E, Wu Peijun, Wen Xiaoquan, Slatcher Richard B, Zhou Xiang, Luca Francesca, Pique-Regi Roger
Center for Molecular Medicine and Genetics, Wayne State University, Detroit, Michigan, USA.
Equal contribution.
bioRxiv. 2022 Oct 15:2021.09.30.462672. doi: 10.1101/2021.09.30.462672.
Synthetic glucocorticoids, such as dexamethasone, have been used as treatment for many immune conditions, such as asthma and more recently severe COVID-19. Single cell data can capture more fine-grained details on transcriptional variability and dynamics to gain a better understanding of the molecular underpinnings of inter-individual variation in drug response. Here, we used single cell RNA-seq to study the dynamics of the transcriptional response to glucocorticoids in activated Peripheral Blood Mononuclear Cells from 96 African American children. We employed novel statistical approaches to calculate a mean-independent measure of gene expression variability and a measure of transcriptional response pseudotime. Using these approaches, we demonstrated that glucocorticoids reverse the effects of immune stimulation on both gene expression mean and variability. Our novel measure of gene expression response dynamics, based on the diagonal linear discriminant analysis, separated individual cells by response status on the basis of their transcriptional profiles and allowed us to identify different dynamic patterns of gene expression along the response pseudotime. We identified genetic variants regulating gene expression mean and variability, including treatment-specific effects, and demonstrated widespread genetic regulation of the transcriptional dynamics of the gene expression response.
合成糖皮质激素,如地塞米松,已被用于治疗多种免疫疾病,如哮喘以及最近的重症 COVID-19。单细胞数据可以捕捉到转录变异性和动态变化方面更精细的细节,以便更好地理解个体间药物反应差异的分子基础。在此,我们使用单细胞 RNA 测序来研究来自 96 名非裔美国儿童的活化外周血单个核细胞对糖皮质激素转录反应的动态变化。我们采用了新颖的统计方法来计算基因表达变异性的均值无关度量以及转录反应伪时间的度量。使用这些方法,我们证明糖皮质激素可逆转免疫刺激对基因表达均值和变异性的影响。我们基于对角线性判别分析的基因表达反应动态的新度量,根据单个细胞的转录谱按反应状态对其进行分离,并使我们能够沿着反应伪时间识别基因表达的不同动态模式。我们鉴定了调节基因表达均值和变异性的遗传变异,包括治疗特异性效应,并证明了基因表达反应转录动态的广泛遗传调控。