Robinson Research Institute, University of Adelaide, Adelaide, Australia.
Women's and Children's Hospital, North Adelaide, Australia.
Sci Rep. 2023 Apr 4;13(1):5506. doi: 10.1038/s41598-023-32256-6.
Epigenetic features such as DNA accessibility dictate transcriptional regulation in a cell type- and cell state- specific manner, and mapping this in health vs. disease in clinically relevant material is opening the door to new mechanistic insights and new targets for therapy. Assay for Transposase Accessible Chromatin Sequencing (ATAC-seq) allows chromatin accessibility profiling from low cell input, making it tractable on rare cell populations, such as regulatory T (Treg) cells. However, little is known about the compatibility of the assay with cryopreserved rare cell populations. Here we demonstrate the robustness of an ATAC-seq protocol comparing primary Treg cells recovered from fresh or cryopreserved PBMC samples, in the steady state and in response to stimulation. We extend this method to explore the feasibility of conducting simultaneous quantitation of chromatin accessibility and transcriptome from a single aliquot of 50,000 cryopreserved Treg cells. Profiling of chromatin accessibility and gene expression in parallel within the same pool of cells controls for cellular heterogeneity and is particularly beneficial when constrained by limited input material. Overall, we observed a high correlation of accessibility patterns and transcription factor dynamics between fresh and cryopreserved samples. Furthermore, highly similar transcriptomic profiles were obtained from whole cells and from the supernatants recovered from ATAC-seq reactions. We highlight the feasibility of applying these techniques to profile the epigenomic landscape of cells recovered from cryopreservation biorepositories.
表观遗传特征,如 DNA 可及性,以细胞类型和细胞状态特异性的方式决定转录调控,在临床相关材料中对健康与疾病进行这种映射,为新的机制见解和治疗靶点开辟了道路。转座酶可及染色质测序(ATAC-seq)分析允许从低细胞输入中进行染色质可及性分析,从而使其适用于罕见细胞群体,如调节性 T(Treg)细胞。然而,对于该检测与冷冻保存的稀有细胞群体的兼容性知之甚少。在这里,我们展示了一种 ATAC-seq 方案的稳健性,该方案比较了从新鲜或冷冻保存的 PBMC 样本中恢复的原发性 Treg 细胞,在稳态和刺激反应中的情况。我们扩展了这种方法,以探索从 50000 个冷冻 Treg 细胞的单个等分试样中同时进行染色质可及性和转录组定量的可行性。在同一细胞池中并行进行染色质可及性和基因表达分析可控制细胞异质性,在受到有限输入材料限制时特别有益。总体而言,我们观察到新鲜和冷冻样本之间的可及性模式和转录因子动力学具有高度相关性。此外,从全细胞和从 ATAC-seq 反应中回收的上清液中获得了高度相似的转录组谱。我们强调了将这些技术应用于从冷冻保存生物库中回收的细胞的表观基因组景观分析的可行性。