Department of Energy, Environmental and Chemical Engineering, Washington University in St. Louis, Saint Louis, Missouri, USA.
Division of Biological and Biomedical Sciences, Washington University in St. Louis, Saint Louis, Missouri, USA.
Nat Commun. 2023 Sep 16;14(1):5757. doi: 10.1038/s41467-023-41572-4.
Elucidating genome-scale regulatory networks requires a comprehensive collection of gene expression profiles, yet measuring gene expression responses for every transcription factor (TF)-gene pair in living prokaryotic cells remains challenging. Here, we develop pooled promoter responses to TF perturbation sequencing (PPTP-seq) via CRISPR interference to address this challenge. Using PPTP-seq, we systematically measure the activity of 1372 Escherichia coli promoters under single knockdown of 183 TF genes, illustrating more than 200,000 possible TF-gene responses in one experiment. We perform PPTP-seq for E. coli growing in three different media. The PPTP-seq data reveal robust steady-state promoter activities under most single TF knockdown conditions. PPTP-seq also enables identifications of, to the best of our knowledge, previously unknown TF autoregulatory responses and complex transcriptional control on one-carbon metabolism. We further find context-dependent promoter regulation by multiple TFs whose relative binding strengths determined promoter activities. Additionally, PPTP-seq reveals different promoter responses in different growth media, suggesting condition-specific gene regulation. Overall, PPTP-seq provides a powerful method to examine genome-wide transcriptional regulatory networks and can be potentially expanded to reveal gene expression responses to other genetic elements.
阐明全基因组调控网络需要全面收集基因表达谱,但在活原核细胞中测量每个转录因子(TF)-基因对的基因表达响应仍然具有挑战性。在这里,我们通过 CRISPR 干扰开发了针对 TF 扰动的汇集启动子响应测序(PPTP-seq)来解决这一挑战。使用 PPTP-seq,我们系统地测量了 183 个 TF 基因单个敲除条件下 1372 个大肠杆菌启动子的活性,在一个实验中说明了超过 200,000 种可能的 TF-基因反应。我们在三种不同的培养基中进行了 PPTP-seq。PPTP-seq 数据揭示了大多数单个 TF 敲除条件下稳健的稳态启动子活性。PPTP-seq 还能够识别到,据我们所知,以前未知的 TF 自身调节反应和一碳代谢的复杂转录控制。我们进一步发现了多个 TF 的上下文相关启动子调节,其相对结合强度决定了启动子活性。此外,PPTP-seq 揭示了不同生长培养基中的不同启动子反应,表明存在特定于条件的基因调控。总体而言,PPTP-seq 提供了一种强大的方法来研究全基因组转录调控网络,并且可以潜在地扩展到揭示对其他遗传元件的基因表达响应。